4.8 Review

Recent Advances on Heterojunction-Type Anode Materials for Lithium-/Sodium-Ion Batteries

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Article Chemistry, Multidisciplinary

Surface Modification Engineering Enabling 4.6 V Single-Crystalline Ni-Rich Cathode with Superior Long-Term Cyclability

Xin-Ming Fan et al.

Summary: The in situ modification strategy to form a uniform and conformal Li1.8Sc0.8Ti1.2(PO4)(3) (LSTP) protective layer helps to construct a robust cathode-electrolyte interphase thin film, improving stability and preventing intergranular cracks. Furthermore, the LSTP conductive modification layer enhances lithium-ion transport, leading to a high reversible capacity and good capacity retention even after multiple cycles.

ADVANCED FUNCTIONAL MATERIALS (2022)

Article Engineering, Environmental

Rational design heterostructured bimetallic selenides for high capacity and durability sodium/potassium-ion storage

Xiaofeng Liu et al.

Summary: Transition metal selenides are considered promising anode materials for sodium/potassium ion batteries due to their high theoretical specific capacity, but designing appropriate nanostructures to address volume changes remains a challenge. In this study, high-performance CoSe2-Cu2Se@NC nanospheres were synthesized using a simple solvothermal method and calcination treatment, showing unique structure and improved performance.

CHEMICAL ENGINEERING JOURNAL (2022)

Article Energy & Fuels

Tunable oxygen deficient in MoO3-x/MoO2 heterostructure for enhanced lithium storage properties

Yanqi Feng et al.

Summary: This study presents a strategy to enhance the energy storage performance of lithium-ion batteries by controlling the concentration of oxygen vacancies and generating MoO3-x/MoO2 heterojunction. The heterojunction exhibits high specific capacity and capacity retention, showing promising potential as an electrode material in Li-ion batteries.

INTERNATIONAL JOURNAL OF ENERGY RESEARCH (2022)

Article Chemistry, Multidisciplinary

Lithium Storage Performance Boosted via Delocalizing Charge in ZnxCo1-xPS3/CoS2 of 2D/3D Heterostructure

Hou-Yang Zhong et al.

Summary: A promising anode material with a 2D/3D heterostructure of bimetallic thiophosphate ZnxCo1-xPS3 and CoS2 has been designed and prepared by effective chemical transformation. The material demonstrates outstanding performance in lithium storage applications, indicating great potential in practical rechargeable battery applications.
Article Chemistry, Physical

Boosting reaction kinetics and improving long cycle life in lamellar VS2/MoS2 heterojunctions for superior sodium storage performance

Runze Fan et al.

Summary: A unique 2D lamellar stacked nanosheet VS2/MoS2 heterostructure was synthesized using a simple hydrothermal treatment, demonstrating multiple structural/compositional advantages as sodium-ion battery anodes. The VS2/MoS2 heterostructure anode exhibited excellent comprehensive electrochemical performances, providing more opportunities for high storage capacity and long cycle life of sodium-ion batteries in the future.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Engineering, Environmental

Metal organic frameworks derived CoS2/NiS2 heterostructure toward high-performance sodium storage anode materials

Jiajia Wang et al.

Summary: The synergistic effect of different components in the anode material composed of transition metal dichalcogenides with heterostructure leads to high reversible capacity and superior rate performance in sodium ion batteries. In this study, a CoS2/NiS2 heterostructure anode was fabricated by a co-precipitation process and hydrothermal sulfidation. The anode exhibited a high capacity and cyclic stability, with good reaction kinetics. The results provide insights for the design of other anode materials with heterostructures for sodium ion batteries.

CHEMICAL ENGINEERING JOURNAL (2022)

Article Electrochemistry

W-Doped LiNi1/3Co1/3Mn1/3O2 with Excellent High-Rate Performance Synthesized via Hydrothermal Lithiation

Pei-yao Li et al.

Summary: A nanoscale LiNi1/3Co1/3Mn1/3O2(NCM111) material was successfully prepared via a hydrothermal lithiation process. The dissolution-recrystallization mechanism enabled the formation of nanoparticles, which shortened the diffusion channel of lithium ions and significantly improved the performance of the NCM111 material. Furthermore, W6+ doping improved the conductivity of the material and stabilized the layered structure, effectively inhibiting cation mixing.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2022)

Review Chemistry, Multidisciplinary

Roles of Metal Ions in MXene Synthesis, Processing and Applications: A Perspective

Yu Long et al.

Summary: This review summarizes the significant progress achieved in the synthesis, processing, and applications of MXenes. It highlights the crucial roles of metal ions in MXene delamination, structure regulation, surface modification, composite construction, and energy storage. The review aims to provide a better understanding of the interactions between metal ions and MXenes for their more effective utilization and rational design.

ADVANCED SCIENCE (2022)

Article Nanoscience & Nanotechnology

Ionically and Electronically Conductive Phases in a Composite Anode for High-Rate and Stable Lithium Stripping and Plating for Solid-State Lithium Batteries

Yijun Zhong et al.

Summary: In this study, a composite anode with metallic lithium, ionically conductive Li3N, and electronically conductive components was developed to decrease the over-potentials in solid-state lithium batteries. The dual conductive phases showed improved electrochemical stability and cycling performance, making them a promising candidate for future Li-containing composite anodes.

ACS APPLIED MATERIALS & INTERFACES (2022)

Article Chemistry, Multidisciplinary

Heterostructured NiS2@SnS2 hollow spheres as superior high-rate and durable anodes for sodium-ion batteries

Chongwei Li et al.

Summary: In this study, NiS2@SnS2 hybrid spheres were delicately designed and constructed to improve the performance of tin-based sulfides as anodes for sodium-ion batteries. The NiS2@SnS2 hybrid composite demonstrated excellent high-rate and durable sodium storage behaviors, providing guidance for fabricating other high-performance SIBs with transition metal-based composite anodes.

SCIENCE CHINA-CHEMISTRY (2022)

Article Chemistry, Physical

Nickel-rich and cobalt-free layered oxide cathode materials for lithium ion batteries

Yu-hong Luo et al.

Summary: This review comprehensively summarizes the development of nickel-rich and cobalt-free cathode materials, highlighting their competitive advantages in reducing costs and increasing energy density. It emphasizes the importance of developing new materials and provides solutions and future research directions to address current deficiencies in this field.

ENERGY STORAGE MATERIALS (2022)

Article Chemistry, Physical

A hydrophobic layer of amino acid enabling dendrite-free Zn anodes for aqueous zinc-ion batteries

Qing Wen et al.

Summary: This study proposes a strategy of interfacial engineering and in situ etching to address the challenges of zinc dendrites and side reactions in aqueous rechargeable zinc ion batteries. By introducing a zinc l-cysteine functional layer, the hydrophobicity of the zinc anode is improved, corrosion is mitigated, and uniform zinc deposition is guided. In addition, in situ etching of the zinc foil increases the electrochemical surface area and reduces interfacial resistance. The experimental results show that the Cys-Zn-coated zinc anode exhibits excellent cycling and rate performance.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Chemistry, Multidisciplinary

Rational Design of Core-Shell ZnTe@N-Doped Carbon Nanowires for High Gravimetric and Volumetric Alkali Metal Ion Storage

Shuanggui Zhang et al.

Summary: By embedding high-density and high-performance active materials in ZnTe@C nanowires, fast charge transfer paths are provided while maintaining the structural and electrical integrity of ZnTe. This strategy represents an effective way to achieve electrode materials with excellent gravimetric and volumetric capacities in energy storage systems.

ADVANCED FUNCTIONAL MATERIALS (2021)

Article Engineering, Environmental

In situ cross-linking construction of 3D mesoporous bimetallic phosphide-in-carbon superstructure with atomic interface toward enhanced sodium ion storage performance

Chunrong Ma et al.

Summary: By utilizing an in situ cross-linking and phosphorization process, a three-dimensional FeP/CoP heterostructure embedded within N-doped carbon aerogel has been successfully constructed. This structure not only enhances ion and electron fast diffusion, but also accommodates volume changes and maintains interface stability effectively.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Chemistry, Physical

Heterogeneous structured Mn2O3/Fe2O3 composite as anode material for high performance lithium ion batteries

Fen Wang et al.

Summary: Heterogeneous structured Mn2O3/Fe2O3 composites were designed and studied as anode materials for lithium ion batteries, demonstrating superior specific capacity, excellent cycling stability, and outstanding rate capability. The feasibility of a full lithium ion battery with heterostructure Mn2O3/Fe2O3 as anode and LiFePO4 as cathode was also verified, showing great performance in improving electrochemical properties.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Highly efficient Co3O4/CeO2 heterostructure as anode for lithium-ion batteries

Ying Kang et al.

Summary: A Co3O4/CeO2 heterostructure derived from metal-organic frameworks was designed and synthesized through one-step microwave synthesis to address the issues of large volume change and low electric conductivity of Co3O4 in lithium-ion batteries. This novel strategy utilizing rare earth components showed high reversible capacity and excellent cycling stability when used as an anode material for LIBs.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2021)

Article Materials Science, Multidisciplinary

ZnO/TiO2/C nanofibers by electrospinning for high-performance lithium storage

Jianguo Zhao et al.

Summary: ZnO/TiO2/C nanofibers with a Zn/Ti mole ratio of 1:1 displayed the highest reversible capacity and excellent rate performance, showing unexpected high specific capacity retention as anode materials.

JOURNAL OF MATERIALS SCIENCE (2021)

Article Materials Science, Multidisciplinary

Heterostructured materials: superior properties from hetero-zone interaction

Yuntian Zhu et al.

Summary: Heterostructured materials are a new class of materials with superior performances that exceed the prediction by the rule-of-mixtures. By controlling heterostructures, unprecedented performances can be achieved.

MATERIALS RESEARCH LETTERS (2021)

Article Nanoscience & Nanotechnology

Enhancing Cell Performance of Lithium-Rich Manganese-Based Materials via Tailoring Crystalline States of a Coating Layer

Zhenjiang He et al.

Summary: This study investigates the impact of coating layers with different crystalline states on the cathode materials of lithium-ion batteries. Coating layers with high crystallinity help mitigate voltage decay, while layers with planar defects facilitate Li+ transfer and enhance rate performance.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Nanoscience & Nanotechnology

MXene/TiO2 Heterostructure-Decorated Hard Carbon with Stable Ti-O-C Bonding for Enhanced Sodium-Ion Storage

Pan Gao et al.

Summary: A solvent mechanochemical method was used to prepare HC-MXene/TiO2 electrode, which can improve the electrochemical performance of batteries, enhance the stability of the electrode structure, provide more active sites, and exhibit superior electrode capacity.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Nanoscience & Nanotechnology

Exploring the Efficient Na/K Storage Mechanism and Vacancy Defect-Boosted Li+ Diffusion Based on VSe2/MoSe2 Heterostructure Engineering

Jing Yang et al.

Summary: The design and optimization of the VSe2/MoSe2 heterostructure improve the efficiency of Li/Na/K-ion batteries by achieving fast ion diffusion kinetics. This breakthrough in interlayer diffusion could pave the way for developing anode materials with excellent electrochemical properties.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Nanoscience & Nanotechnology

In Situ Construction of High-Performing Compact Si-SiOx-CNx Composites from Polyaminosiloxane for Li-Ion Batteries

Ran Wang et al.

Summary: A unique Si-SiOx-CNx composite anode architecture has been developed through the pyrolysis of a polyaminosiloxane precursor, featuring high-purity Si nanocrystals, an amorphous silica matrix, and N-doped carbon layers. This structure, with all three components linked by chemical bonding, enables promising electrochemical performance, including excellent cycle performance and outstanding rate performance. The composite anode also shows great potential for high-energy Li-ion batteries, demonstrated by stable cycle performance and high capacity in full-cell tests.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Chemistry, Multidisciplinary

Microbe-Assisted Assembly of Ti3C2Tx MXene on Fungi-Derived Nanoribbon Heterostructures for Ultrastable Sodium and Potassium Ion Storage

Junming Cao et al.

Summary: This study designed a MXene@N-doped carbonaceous nanofiber structure through an in situ bioadsorption strategy, significantly improving the performance of sodium- and potassium-ion batteries. The microorganism-derived 2D MXene-1D N-doped carbonaceous nanofiber structure with fully opened pores and transport channels enhances ion conduction and transport, showing potential for addressing challenges in 2D energy storage materials.

ACS NANO (2021)

Article Chemistry, Physical

High capacity and mobility in germanium sulfide/graphene (GeS/Gr) van der Waals heterostructure as anode materials for sodium-ion batteries: A first-principles investigation

Kimal Chandula Wasalathilake et al.

Summary: The GeS/Gr heterostructure demonstrates high mechanical strength and excellent structural stability, with a semiconductor-to-metal transition upon Na adsorption, showing enhanced electrical conductivity. This hybrid anode exhibits outstanding Na storage capacity and a low energy barrier for Na diffusion, indicating great cycling stability.

APPLIED SURFACE SCIENCE (2021)

Article Engineering, Multidisciplinary

Constructing a directional ion acceleration layer at WO3/ZnO heterointerface to enhance Li-ion transfer and storage

Chuanbao Tu et al.

Summary: The study successfully enhanced the transport properties of lithium ions during charge-discharge processes with a directional built-in electric field in the WO3/ZnO heterostructure film electrode, showing remarkable reversible discharge capacity, high-rate performance, and excellent cycling stability.

COMPOSITES PART B-ENGINEERING (2021)

Article Engineering, Environmental

Synergistical coupling Janus SnS-Fe1-xS heterostructure cell and polydopamine-derived S doped carbon as high-rate anodes for sodium-ion batteries

Fengjun Zhao et al.

Summary: The novel SFS@SC nanocubes synthesized through a facile coprecipitation method exhibit excellent cycling stability and rate performance due to their unique nanoarchitecture with enhanced charge transfer.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Environmental

Ion-exchange strategy of CoS2/Sb2S3 hetero-structured nanocrystals encapsulated into 3D interpenetrating dual-carbon framework for high-performance Na+/K+ batteries

Xiaotong Li et al.

Summary: By combining the advantages of cobalt and zinc-based imidazolate frameworks, CoS2/Sb2S3@NC/CNT hetero-structured nanocrystals were successfully prepared, exhibiting favorable rate capability and cycle stability. This novel material provides a new method for the preparation of heterogeneous structure anode materials, paving the way for potential applications in high-efficiency energy storage devices.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Environmental

Surface-seeding secondary growth for CoO@Co9S8 P-N heterojunction hollow nanocube encapsulated into graphene as superior anode toward lithium ion storage

Chuanbao Tu et al.

Summary: This study successfully prepared heterogenous CoO@Co9S8-rGO hollow nanocube with enhanced charge carrier transport behavior, exhibiting excellent electrochemical performance. The heterointerface structure exposed more active sites, accelerated lithium ion transport, and improved electrode discharge capacity and cycling stability.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Environmental

Lowering the voltage-hysteresis of CuS anode for Li-ion batteries via constructing heterostructure

Huiqiao Liu et al.

Summary: This study proposes and successfully verifies the hypothesis of lowering voltage-hysteresis by constructing heterostructures. The CuS/MnS-C HNFs electrode exhibits lower voltage-hysteresis values and the best rate performance among their counterpart electrodes.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Multidisciplinary

Ultrafast kinetics and high capacity for Stable Sodium Storage enabled by Fe3Se4/ZnSe heterostructure engineering

Yawei Zhang et al.

Summary: In this study, heterostructure-decorated core-shell Fe3Se4/ZnSe@carbon nanospheres were designed to boost the kinetics of advanced sodium-ion batteries. The result showed ultrafast charging-discharging kinetics and outstanding cycling stability, offering a strategy for enhancing reaction kinetics and a synthetic route for high-performance anode materials for sodium storage.

COMPOSITES PART B-ENGINEERING (2021)

Article Electrochemistry

Synergistic effect between 1T′-ReS2 nanosheet arrays and FeS2 nano-spindle in 1T′-ReS2@FeS2@NC heterostructured anode for Na+ storage

Jinyi Lin et al.

Summary: In this study, a 1T'-ReS2@FeS2@NC heterostructure was prepared as an anode material for sodium-ion batteries, showing excellent performance and potential application prospects.

ELECTROCHIMICA ACTA (2021)

Article Materials Science, Multidisciplinary

Atomic investigation on structural rearrangement of MoS2/graphene heterostructure upon electrochemical lithiation and delithiation

Ke Xu et al.

Summary: The study investigates the structural rearrangement of the MoS2/graphene composite during lithiation and delithiation processes, revealing that the lithiated configuration cannot be fully restored to the original structure, leading to irreversible lithium loss in the subsequent lithiation process.

MATERIALS LETTERS (2021)

Article Chemistry, Multidisciplinary

Antiblocking Heterostructure to Accelerate Kinetic Process for Na-Ion Storage

Dianding Sun et al.

Summary: This study synthesized NiTe2-ZnTe antiblocking and CoTe2-ZnTe blocking heterostructures, and found that antiblocking heterointerfaces can boost Na-ion diffusion efficiency and decrease the diffusion barrier, leading to the design of more efficient heterostructures for better Na-ion storage performance.
Review Chemistry, Physical

Recent Advances in Heterostructured Anode Materials with Multiple Anions for Advanced Alkali-Ion Batteries

Gi Dae Park et al.

Summary: With the advancement of rechargeable battery technology, the development of advanced electrode materials is crucial to meet the demand for higher energy and power densities. Alloying and conversion reaction-based anode materials offer higher theoretical capacities but face challenges like large volume changes and low electrical conductivity. The construction of heterostructures can greatly enhance capacity and rate performance.

ADVANCED ENERGY MATERIALS (2021)

Article Chemistry, Physical

Structure design of CuO/Cu2O@C heterostructure polyhedron accumulated by hollow microspheres for high-performance lithium storage

Qianwen Xu et al.

Summary: In this work, a CuO/Cu2O@C heterostructure polyhedron was obtained through an etching-pyrolysis-oxidation strategy, showing excellent performance as an anode material for lithium-ion batteries. The material exhibited high initial discharge specific capacity, good initial Coulombic efficiency, and long cycle life, attributed to its unique structure and synergistic interaction between components.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Nanosized monometallic selenides heterostructures implanted into metal organic frameworks-derived carbon for efficient lithium storage

Zhichao Liu et al.

Summary: The study developed nanosized monometallic selenides heterostructures by precise control selenylation of metal organic frameworks, demonstrating their enormous potential in lithium storage properties surpassing single-phase counterparts.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Integrating SnS2 Quantum Dots with Nitrogen-Doped Ti3C2Tx MXene Nanosheets for Robust Sodium Storage Performance

Jianfeng Ding et al.

Summary: A novel SnS2 QDs/Ti3C2 electrode with high specific capacity and ultrastable cycling performance has been successfully developed through ingenious design and control, benefiting from abundant active sites on the interface and stronger Na+ adsorption energy.

ACS APPLIED ENERGY MATERIALS (2021)

Article Engineering, Environmental

Amorphous MoS3 decoration on 2D functionalized MXene as a bifunctional electrode for stable and robust lithium storage

Huanhui Chen et al.

Summary: The development of multifunctional heterostructure material (MoS3-Ti3C2Tx) showed significant improvement in the performance of rechargeable lithium batteries, exhibiting high specific capacity, excellent rate performance, and long-term cycling stability. Additionally, the material demonstrated high catalytic activity for lithium-sulfur batteries, providing a promising solution for both lithium-sulfur and lithium-ion battery applications.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Environmental

Interface engineering of Fe3Se4/FeSe heterostructure encapsulated in electrospun carbon nanofibers for fast and robust sodium storage

Jiawei Liu et al.

Summary: Researchers developed a Fe3Se4/FeSe heterostructure with improved capacity and cycling life for sodium-ion batteries, and Density Functional Theory calculations confirmed its enhancement on electronic conductivity and Na+ diffusion rate.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Materials Science, Multidisciplinary

Comprehensive understanding of Li/Ni intermixing in layered transition metal oxides

Han-xin Wei et al.

Summary: With the development of high energy density battery technology, Ni-rich layered transition metal oxide cathode materials, particularly in Li-ion batteries, have attracted attention. However, the inevitable Li/Ni intermixing affects the material performance. This review comprehensively summarizes the reasons for Li/Ni intermixing and its impact on materials, and presents methods for regulating it.

MATERIALS TODAY (2021)

Article Green & Sustainable Science & Technology

Recent progress on heterostructure materials for next-generation sodium/potassium ion batteries

Peng Du et al.

Summary: The high demand for clean and renewable energy has led to the exploration of advanced energy storage systems, with a focus on sodium-ion batteries (SIBs) and potassium-ion batteries (PIBs) as promising options. Despite the challenges faced in developing next-generation SIBs/PIBs anode, the research on heterostructure anodes (HSAs) is believed to offer guidance for new materials exploration and enhancement of electrochemical properties. This review provides a comprehensive understanding of the electrochemical behaviors, reaction mechanisms, and future modification strategies for HSAs.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Article Chemistry, Physical

Lithium-rich manganese-based cathode materials with highly stable lattice and surface enabled by perovskite-type phase-compatible layer

Han-xin Wei et al.

Summary: By modifying the surface of Li-rich Mn-based cathode materials with a perovskite-type LaMnO3 layer, the anion activity was effectively suppressed and cycle stability was improved, leading to enhanced electrochemical performance.

NANO ENERGY (2021)

Article Chemistry, Physical

MoS2/SnS@C hollow hierarchical nanotubes as superior performance anode for sodium-ion batteries

Lin-bo Tang et al.

Summary: SnS, a two-dimensional layered material, shows promising potential for sodium storage as an anode material due to its high theoretical capacity and large interlayer spacing, despite challenges such as large volume expansion and low electronic conductivity. The synthesis of a MoS2/SnS@C hollow hierarchical nanotube structure can effectively enhance structural stability and increase capacitance contribution ratio. Utilization of these composites as anode materials in sodium-ion batteries results in excellent rate and cycle performance.

NANO ENERGY (2021)

Article Chemistry, Physical

Dehydrogenation-driven Li metal-free prelithiation for high initial efficiency SiO-based lithium storage materials

Dong Jae Chung et al.

Summary: Research shows that dehydrogenation-driven prelithiation using lithium hydride can significantly improve the initial Coulombic efficiency of silicon monoxide, thereby enhancing the performance of lithium-ion batteries. Silicon monoxide prelithiated through this method exhibits higher capacity and better cycling stability in tests, enabling a significant increase in the energy density of the overall battery system.

NANO ENERGY (2021)

Article Chemistry, Multidisciplinary

Improving Na+ transport kinetics and Na+ storage of hierarchical rhenium-nickel sulfide (ReS2@NiS2) hollow architecture by assembling layered 2D-3D heterostructures

Zelin Cai et al.

Summary: The ReS2@NiS2 heterostructures, with ReS2 nanosheet arrays anchored on the surface of NiS2 hollow nanosphere, exhibit excellent electrochemical performance in sodium-ion batteries, achieving high specific capacity and stable cycle stability.

CHINESE CHEMICAL LETTERS (2021)

Article Engineering, Multidisciplinary

Multi-yolk ZnSe/2(CoSe2)@NC heterostructures confined in N-doped carbon shell for high-efficient sodium-ion storage

Wengang Yan et al.

Summary: A multi-yolk-shell ZnSe/2(CoSe2)@NC heterostructure for sodium ion storage is demonstrated to exhibit superior cycling and rate performance, accelerating the advancement of advanced alkali metal ion batteries.

COMPOSITES PART B-ENGINEERING (2021)

Article Chemistry, Physical

N,S co-doped carbon confined MnO/MnS heterostructures derived from a one-step pyrolysis of Mn-methionine frameworks for advanced lithium storage

Kui Wang et al.

Summary: An efficient synthetic strategy was developed to fabricate N,S co-doped carbon confined MnO/MnS heterostructures, which exhibited attractive electrochemical properties when employed as an anode material for lithium-ion batteries.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Interface-Engineered Fe3O4/MXene Heterostructures for Enhanced Lithium-Ion Storage

Peng Zhang et al.

Summary: Fe3O4/MXene hybrid heterostructures were successfully constructed using an interfacial self-assembly approach, resulting in an ideal arrangement where 70 wt% Fe3O4 exhibited enhanced capacity and stability during battery cycling. This dual-mode charge storage mechanism anticipates promising future applications for next-generation LIBs.

ACS APPLIED ENERGY MATERIALS (2021)

Article Chemistry, Applied

Boosting cell performance of LiNi0.8Co0.1Mn0.1O2 cathode material via structure design

Lin-bo Tang et al.

Summary: A novel Ni-rich oxide composite material with a La2Zr2O7 coating and Zr doping was successfully designed in this study, showing improved ion diffusion kinetics and suppressed phase transition, leading to excellent electrochemical performance.

JOURNAL OF ENERGY CHEMISTRY (2021)

Article Chemistry, Multidisciplinary

Bilateral Interfaces in In2Se3-CoIn2-CoSe2 Heterostructures for High-Rate Reversible Sodium Storage

Shuhao Xiao et al.

Summary: A unique heterostructure composed of In2Se3 and CoSe2 was successfully constructed, leading to enhanced electrical and ionic conductivities, Na diffusion process, and structural stability compared to traditional metal selenides. This nanoconstruction exhibited high reversible capacity and superior rate performance in sodium-ion batteries.

ACS NANO (2021)

Review Chemistry, Multidisciplinary

Emerging of Heterostructure Materials in Energy Storage: A Review

Yu Li et al.

Summary: This review discusses the recent progress in heterostructure materials in the field of energy storage, summarizing their fundamental characteristics, synthesis routes, advantages and drawbacks, as well as their applications and achievements in various batteries and supercapacitors.

ADVANCED MATERIALS (2021)

Article Engineering, Environmental

Nanoconfined SnO2/SnSe2 heterostructures in N-doped carbon nanotubes for high-performance sodium-ion batteries

Pengxin Li et al.

Summary: Tin-based compounds are promising anode materials for sodium-ion batteries due to their high theoretical capacities, low sodiation potential, and the composite anode consisting of SnO2/SnSe2@C shows superior rate capability and cycling stability, attributed to its well-designed electrode architecture and the incorporation of heterostructures.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Electrochemistry

Dual interface engineering of NiO/NiCo2O4/CoO heterojunction within graphene networks for high-performance lithium storage

Yun Li et al.

Summary: This study successfully constructed NiO/NiCo2O4/CoO heterostructures within graphene networks by controlling solvothermal reactions and calcination treatments, achieving dual interfaces of NiO/NiCo2O4 and CoO/NiCo2O4. The unique structure and properties of the composite provide new possibilities for high-performance energy storage and conversion.

ELECTROCHIMICA ACTA (2021)

Article Chemistry, Physical

Heterostructured SnSe2-CoSe2 microspheres embedded in reduced graphene oxides as an anode material with high sodium storage

Yuanqiong Huang et al.

Summary: Bimetallic selenides have potential as ideal anode materials for sodium ion batteries, but challenges such as volume expansion and sluggish redox kinetics of Na ion need to be addressed. This study successfully synthesized a composite of heterostructured SnSe2-CoSe2 microspheres embedded in reduction graphene oxide network, which showed high discharge capacity, enhanced rate capability, and superior cycling performance in SIBs, demonstrating significant potential for efficient SIBs.

IONICS (2021)

Article Chemistry, Physical

Engineering of Ni3S4/Co3S4 nanosheets@N, S co-doped carbon anode for lithium-ion batteries

Kairui Xu et al.

Summary: In this study, Ni3S4/Co3S4@NSC composites were synthesized using hydrothermal technology, which enhanced electronic conductivity and lithium-ion transport rate, resulting in high specific capacity and stable coulombic efficiency. The composite material exhibited excellent cycle stability, providing a new strategy for regulating the performance of LIB anodes.

IONICS (2021)

Article Chemistry, Physical

Metal-organic framework derived FeS/MoS2 composite as a high performance anode for sodium-ion batteries

Likang Fu et al.

Summary: The flower-like FeS/MoS2 composite exhibits metallic behavior and provides a reversible capacity of 464 mA h g(-1), showing good stability and high capacity retention rate at high current density. Adsorption energy calculations indicate potential for trapping more Na atoms, showcasing potential for application in high-performance SIBs.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Interface and structure engineering of bimetallic selenides toward high-performance sodium-ion half/full batteries

Lei Zhang et al.

Summary: The CoSe2-MoSe2 yolk-shell spheres synthesized through synergistic engineering of interface and structure exhibit high capacity and stable performance in sodium-ion batteries, showing great potential for high-energy density energy storage devices.

JOURNAL OF POWER SOURCES (2021)

Article Chemistry, Physical

High-Capacity and Kinetically Accelerated Lithium Storage in MoO3 Enabled by Oxygen Vacancies and Heterostructure

Yingying Zhang et al.

Summary: The MoO3-x/MXene heterostructure, fabricated by introducing oxygen vacancies and MXene nanosheets, exhibits excellent lithium-ion storage performances due to accelerated ion diffusion kinetics, enhanced electrical conductivity, and additional active sites induced by oxygen vacancies as well as robust interfacial contact. This composite shows a high reversible capacity of 1258 mAh g(-1) at 0.1 A g(-1) for Li-ion storage and retains 474 mAh g(-1) at 10 A g(-1), remarkably higher than previously reported MoO3-based anode materials. The composite also achieves an unparalleled energy density of 330 Wh kg(-1) when assembled with commercial LiFePO4 into a full LIB.

ADVANCED ENERGY MATERIALS (2021)

Article Chemistry, Multidisciplinary

Construction of Sb2S3@SnS@C Tubular Heterostructures as High-Performance Anode Materials for Sodium-Ion Batteries

Jian Lin et al.

Summary: The Sb2S3@SnS@C nanocomposites with a hollow-tube-heterostructure show improved performance for sodium-ion batteries, including cycling stability and rate capacity.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2021)

Article Chemistry, Physical

Chain mail heterostructured hydrangea-like binary metal sulfides for high efficiency sodium ion battery

Duo Wang et al.

Summary: A chain mail Sb2S3/MoS2 heterostructure was designed by one-step sulfidation of a hydrangea-like Sb2MoO6 precursor, exhibiting large specific surface area and well-distributed heterointerfaces. The introduction of band engineering modulates electronic states of heterointerfaces, enhancing interfacial charge transportation and structure stability for improved cycling performance of sodium-ion batteries.

NANO ENERGY (2021)

Article Materials Science, Multidisciplinary

Facile preparation of MoP/TiO2 composite by electrospinning method for sodium ion battery anode

Zhenjiang Liu et al.

Summary: The well-dispersed MoP nanoparticles confined in a carbon nanofiber skeleton with the introduction of titania exhibited superior cycling stability and performance. This design provides a simple and efficient way for the preparation of phosphides.

MATERIALS RESEARCH LETTERS (2021)

Article Chemistry, Physical

Quantum dot heterostructure with directional charge transfer channels for high sodium storage

Song Yang et al.

Summary: Transition metal carbides (TMCs) are considered promising anode materials for sodium ion batteries due to their high conductivity and chemical stability, but their practical applications have been hindered by slow kinetics and volume expansion. A universal strategy of loading high work-function metal quantum dots (QDs) to provide a directional charge transfer path by constructing the interfacial Mott-Schottky heterojunction has been proposed to address these issues and enhance the sodium storage capability of TMCs, leading to unprecedented capacity, rate performance, and cycling stability.

ENERGY STORAGE MATERIALS (2021)

Article Chemistry, Physical

Rational Design of the CoS/Co9S8@NC Composite Enabling High-Rate Sodium-Ion Storage

Ying Qi et al.

Summary: Cobalt sulfides embedded in N-doped carbon composite were synthesized in this study, showing enhanced rate capability and cycling stability compared to Co9S8. This work provides an effective material design strategy for enhancing the electrochemical performance of sodium-ion storage by depicting the change of Na+ diffusion under the influence of heterostructures.

ACS APPLIED ENERGY MATERIALS (2021)

Review Green & Sustainable Science & Technology

Microcrack generation and modification of Ni-rich cathodes for Li-ion batteries: A review

Jingyi Li et al.

Summary: Ni-rich transition metal layered oxides have high energy density and discharge capacity, but suffer from microcracks within the secondary particles when the nickel content exceeds 80%, leading to rapid degradation of cell performance. Research focuses on understanding the causes of microcracks and developing strategies to suppress their generation and propagation.

SUSTAINABLE MATERIALS AND TECHNOLOGIES (2021)

Article Chemistry, Physical

Hierarchical MoS2-NiS nanosheet-based nanotubes@N-doped carbon coupled with ether-based electrolytes towards high-performance Na-ion batteries

Fan Yang et al.

Summary: The MNS-HNT@NC composite, based on hierarchical nanosheet-based nanotubes, utilizes advantages such as high surface-to-volume ratios, lattice defects, and internal electric fields to improve Na ion intercalation kinetics. It can accommodate the volume change of the electrode and prevent structural collapse during cycling. MoS2 and NiS nanocrystals in the composite act as mutual spacers to avoid aggregation, while the N-doped carbon coating reduces contact resistance and restrains volume change, preventing electrode pulverization.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Review Chemistry, Physical

Recent Advances in Heterostructured Carbon Materials as Anodes for Sodium-Ion Batteries

Rui Zhao et al.

Summary: Carbon materials have garnered extensive attention as anodes for sodium-ion batteries due to their abundant resources, low cost, and diverse structure. Different structural configurations of carbon materials exhibit distinct electrochemical properties, paving the way for robust carbon-based heterostructures with enhanced performances in Na-ion storage. This review comprehensively discusses the fabrication and benefits of various carbon-based heterostructures, as well as explores key obstacles and potential production of such structures for high-performance carbon-based anode materials for SIBs.

SMALL STRUCTURES (2021)

Article Chemistry, Physical

A MnS/FeS2 heterostructure with a high degree of lattice matching anchored into carbon skeleton for ultra-stable sodium-ion storage

Luchao Yue et al.

Summary: By synthesizing a heterostructure between MnS and FeS2, this work accelerates charge transfer and enhances cycling stability, providing new insights into the design of anode materials.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Chemistry, Physical

In situ tailoring bimetallic-organic framework-derived yolk-shell NiS2/CuS hollow microspheres: an extraordinary kinetically pseudocapacitive nanoreactor for an effective sodium-ion storage anode

Wenxi Zhao et al.

Summary: The yolk-shell NiS2/CuS hollow microspherical architecture successfully constructed in this study exhibits superb kinetically pseudocapacitive features, enabling fast charge transfer, Na+ immigration, and extraordinary Na+-storage capability.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Review Chemistry, Multidisciplinary

Interface chemistry of two-dimensional heterostructures - fundamentals to applications

Sharafadeen Gbadamasi et al.

Summary: This review discusses the recent progress in the field of two-dimensional heterostructures (2D HSs), focusing on the fundamentals and chemistry of heterointerfaces based on van der Waals and covalent interactions. It also addresses challenges in scalable synthesis and introduces characterization techniques for revealing the heterointerface formation, chemistry, and nature. Additionally, it highlights the role of 2D HSs in various emerging applications such as high-power batteries, bifunctional catalysts, electronics, and sensors.

CHEMICAL SOCIETY REVIEWS (2021)

Article Chemistry, Physical

Structure-induced partial phase transformation endows hollow TiO2/TiN heterostructure fibers stacked with nanosheet arrays with extraordinary sodium storage performance

Pan Xue et al.

Summary: By utilizing a structure-induced partial phase transformation method, hierarchical hollow TiO2/TiN heterostructure fibers with a high specific surface area were successfully synthesized as an anode material. The interfacial effect of the heterostructures improved charge transfer capability for the anode materials.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Chemistry, Physical

Heterojunction TiO2@TiOF2 nanosheets as superior anode materials for sodium-ion batteries

Shoujie Guan et al.

Summary: Anatase TiO2 is a promising anode material for sodium-ion batteries, but its shortcomings in semiconductor properties and sluggish Na+ diffusion kinetics hinder further development. A heterojunction TiO2@TiOF2 structure constructed with two-dimensional nanosheets shows stable cycling performance for up to 10,000 cycles at high current densities, attributed to its unique structure and the in situ formation of a NaF protective layer. Density functional theory calculations indicate that the heterostructure TiO2@TiOF2 nanosheets exhibit improved electrical conductivity and lower formation energies of Na+ ions compared to the separated TiO2 and TiOF2.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Chemistry, Physical

Constructing a hollow microflower-like ZnS/CuS@C heterojunction as an effective ion-transport booster for an ultrastable and high-rate sodium storage anode

Wenxi Zhao et al.

Summary: Hierarchical heterostructure coupling metal sulfides with carbonaceous functional support shows promising performance as anode candidates in sodium-ion batteries. The developed ZnS/CuS@C architecture exhibits impressive cycling life and competitive rate capability due to the synergistic coupling effect of heterostructures. Kinetics analysis and theoretical calculations suggest that the heterointerface induces large pseudocapacitive behaviors and ultrafast sodiation kinetics.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Chemistry, Physical

Heterostructure enhanced sodium storage performance for SnS2 in hierarchical SnS2/Co3S4 nanosheet array composite

Lele Cheng et al.

Summary: A uniformly distributed SnS2/Co3S4 heterostructure nanosheet array was grown on carbon cloth fibers, delivering stable charge and discharge capacities in sodium-ion batteries. The hierarchical SnS2/Co3S4@CC nanoarray composite exhibited excellent cycle stability and capacity retention, attributed to the rational design of arrayed-electrode structure and in situ growth of Co3S4 nanoparticles on the heterointerface of matrix SnS2 nanosheets. This rational design provides new possibilities for future energy storage applications.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Chemistry, Multidisciplinary

Ultrasmall SnO2 nanocrystals sandwiched into polypyrrole and Ti3C2Tx MXene for highly effective sodium storage

Jianfeng Ding et al.

Summary: A novel sandwich structured P-SnO2/Ti3C2 composite was successfully synthesized using an in situ interfacial growth strategy, demonstrating excellent sodium storage properties. Through rational design and precise control of material structure, the study effectively improved the cycle life and rate performance of SIBs.

MATERIALS CHEMISTRY FRONTIERS (2021)

Article Chemistry, Physical

Boosting the sodium storage of the 1T/2H MoS2@SnO2 heterostructure via a fast surface redox reaction

Dayong Gui et al.

Summary: This study presents a transition from bulk diffusion to surface-dominant pseudocapacitive charge storage in sodium ion batteries, achieved through nanoscaling and heterostructuring. The 1T/2H MoS2@SnO2 heterostructure showed higher specific capacity and superior cycling and rate capabilities compared to raw MoS2 and 2H MoS2@SnO2 counterparts, due to improved charge transfer kinetics and fast surface redox reactions dominating Na+ storage.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Article Nanoscience & Nanotechnology

Ultrasmall SnS Quantum Dots Anchored onto Nitrogen-Enriched Carbon Nanospheres as an Advanced Anode Material for Sodium-Ion Batteries

Ganesh Kumar Veerasubramani et al.

ACS APPLIED MATERIALS & INTERFACES (2020)

Article Chemistry, Physical

Anode materials from MoS2 and multilayered holey graphene for Li-ion batteries

Svetlana G. Stolyarova et al.

FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES (2020)

Article Chemistry, Physical

Performance of a Novel 3D Graphene-WS2 Hybrid Structure for Sodium-Ion Batteries

Mahnaz Mohammadi

JOURNAL OF PHYSICAL CHEMISTRY C (2020)

Article Chemistry, Physical

S/N-doped carbon nanofibers affording Fe7S8 particles with superior sodium storage

Xiu Li et al.

JOURNAL OF POWER SOURCES (2020)

Article Chemistry, Physical

Heterostructure SnSe2/ZnSe@PDA Nanobox for Stable and Highly Efficient Sodium-Ion Storage

Pei Liu et al.

ADVANCED ENERGY MATERIALS (2020)

Article Electrochemistry

SnO2Quantum Dots Interspersed d-Ti3C2Tx MXene Heterostructure with Enhanced Performance for Lithium Ion Battery

Libo Wang et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2020)

Article Chemistry, Inorganic & Nuclear

Constructing heterostructured FeS2/CuS nanospheres as high rate performance lithium ion battery anodes

Xiaoxia Xu et al.

INORGANIC CHEMISTRY FRONTIERS (2020)

Article Chemistry, Multidisciplinary

A MoS2@SnS heterostructure for sodium-ion storage with enhanced kinetics

Yemao Lin et al.

NANOSCALE (2020)

Article Electrochemistry

Raising Lithium Storage Performances of NaTi2(PO4)3 by Nitrogen and Sulfur Dual-Doped Carbon Layer

Zhen Jiang et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2020)

Article Engineering, Environmental

Tin disulfide embedded in N-, S-doped carbon nanofibers as anode material for sodium-ion batteries

Jing Xia et al.

CHEMICAL ENGINEERING JOURNAL (2019)

Article Chemistry, Physical

Probing C3N/Graphene heterostructures as anode materials for Li-ion batteries

Yiran Wang et al.

JOURNAL OF POWER SOURCES (2019)

Article Materials Science, Multidisciplinary

Phosphorus incorporation into graphitic material via hot pressing of graphite oxide and triphenylphosphine

A. Okotrub et al.

SYNTHETIC METALS (2019)

Article Chemistry, Physical

Freeze-drying induced self-assembly approach for scalable constructing MoS2/graphene hybrid aerogels for lithium-ion batteries

Shouling Wang et al.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2019)

Article Chemistry, Multidisciplinary

Edge Capping of 2D-MXene Sheets with Polyanionic Salts To Mitigate Oxidation in Aqueous Colloidal Suspensions

Varun Natu et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2019)

Article Chemistry, Inorganic & Nuclear

Hollow paramecium-like SnO2/TiO2 heterostructure designed for sodium storage

L. Y. Yang et al.

JOURNAL OF SOLID STATE CHEMISTRY (2019)

Article Nanoscience & Nanotechnology

Boosting Sodium Storage of Fe1-xS/MoS2 Composite via Heterointerface Engineering

Song Chen et al.

NANO-MICRO LETTERS (2019)

Article Chemistry, Physical

Heterostructured MXene and g-C3N4 for high-rate lithium intercalation

Yun-Pei Zhu et al.

NANO ENERGY (2019)

Review Chemistry, Multidisciplinary

Silicon oxides: a promising family of anode materials for lithium-ion batteries

Zhenhui Liu et al.

CHEMICAL SOCIETY REVIEWS (2019)

Article Chemistry, Multidisciplinary

Heterostructured SnS/TiO2@C hollow nanospheres for superior lithium and sodium storage

Yan Zhang et al.

NANOSCALE (2019)

Article Nanoscience & Nanotechnology

Heterostructured Bi2S3-Bi2O3 Nanosheets with a Built-In Electric Field for Improved Sodium Storage

Wen Luo et al.

ACS APPLIED MATERIALS & INTERFACES (2018)

Article Chemistry, Multidisciplinary

MoS2-on-MXene Heterostructures as Highly Reversible Anode Materials for Lithium-Ion Batteries

Chi Chen et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2018)

Article Engineering, Environmental

Carbon-encapsulated 1D SnO2/NiO heterojunction hollow nanotubes as high-performance anodes for sodium-ion batteries

Wenming Zhang et al.

CHEMICAL ENGINEERING JOURNAL (2018)

Article Chemistry, Physical

N-doped carbon coated anatase TiO2 nanoparticles as superior Na-ion battery anodes

Jin Wang et al.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2018)

Article Materials Science, Multidisciplinary

Hydrothermal synthesis of Co-doped-MoS2/reduced graphene oxide hybrids with enhanced electrochemical lithium storage performances

Shurui Xu et al.

MATERIALS CHEMISTRY AND PHYSICS (2018)

Article Chemistry, Multidisciplinary

Surfactant-assisted solvothermal synthesis of NiCo2O4 as an anode for lithium-ion batteries

Yehua Li et al.

RSC ADVANCES (2017)

Article Chemistry, Physical

A new layered titanate Na2Li2Ti5O12 as a high-performance intercalation anode for sodium-ion batteries

Yangyang Huang et al.

JOURNAL OF MATERIALS CHEMISTRY A (2017)

Article Nanoscience & Nanotechnology

CoS2 Nanoparticles Wrapping on Flexible Freestanding Multichannel Carbon Nanofibers with High Performance for Na-Ion Batteries

Yuelei Pan et al.

ACS APPLIED MATERIALS & INTERFACES (2017)

Review Chemistry, Multidisciplinary

Sodium-ion batteries: present and future

Jang-Yeon Hwang et al.

CHEMICAL SOCIETY REVIEWS (2017)

Review Chemistry, Multidisciplinary

High-voltage positive electrode materials for lithium-ion batteries

Wangda Li et al.

CHEMICAL SOCIETY REVIEWS (2017)

Article Nanoscience & Nanotechnology

Enhancing Sodium-Ion Storage Behaviors in TiNb2O7 by Mechanical Ball Milling

Yangyang Huang et al.

ACS APPLIED MATERIALS & INTERFACES (2017)

Article Chemistry, Multidisciplinary

Layered Orthorhombic Nb2O5@Nb4C3Tx and TiO2@Ti3C2Tx Hierarchical Composites for High Performance Li-ion Batteries

Chuanfang (John) Zhang et al.

ADVANCED FUNCTIONAL MATERIALS (2016)

Review Chemistry, Multidisciplinary

Nanoscale Engineering of Heterostructured Anode Materials for Boosting Lithium-Ion Storage

Gen Chen et al.

ADVANCED MATERIALS (2016)

Article Electrochemistry

Honeycomb-Spherical Co3O4-TiO2 Hybrid Materials for Enhanced Lithium Storage

Youpeng Li et al.

ELECTROCHIMICA ACTA (2016)

Article Chemistry, Physical

Atomic Layer-by-Layer Co3O4/Graphene Composite for High Performance Lithium-Ion Batteries

Yuhai Dou et al.

ADVANCED ENERGY MATERIALS (2016)

Article Chemistry, Multidisciplinary

Controlling interfacial contact and exposed facets for enhancing photocatalysis via 2D-2D heterostructures

Fan Dong et al.

CHEMICAL COMMUNICATIONS (2015)

Article Chemistry, Multidisciplinary

Sodium intercalation chemistry in graphite

Haegyeom Kim et al.

ENERGY & ENVIRONMENTAL SCIENCE (2015)

Article Chemistry, Multidisciplinary

Graphitic Carbon Conformal Coating of Mesoporous TiO2 Hollow Spheres for High-Performance Lithium Ion Battery Anodes

Hao Liu et al.

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2015)

Article Chemistry, Multidisciplinary

Sheet-like structure FeF3/graphene composite as novel cathode material for Na ion batteries

Yongqiang Shen et al.

RSC ADVANCES (2015)

Review Chemistry, Physical

Review on recent progress of nanostructured anode materials for Li-ion batteries

Subrahmanyam Goriparti et al.

JOURNAL OF POWER SOURCES (2014)

Article Chemistry, Multidisciplinary

Electrospun Sb/C Fibers for a Stable and Fast Sodium-Ion Battery Anode

Yujie Zhu et al.

ACS NANO (2013)

Article Chemistry, Physical

High Capacity MoO2/Graphite Oxide Composite Anode for Lithium-Ion Batteries

Yun Xu et al.

JOURNAL OF PHYSICAL CHEMISTRY LETTERS (2012)

Article Materials Science, Multidisciplinary

SnO2 and TiO2 nanosheets for lithium-ion batteries

Jun Song Chen et al.

MATERIALS TODAY (2012)

Article Chemistry, Physical

Na2Ti3O7: Lowest Voltage Ever Reported Oxide Insertion Electrode for Sodium Ion Batteries

Premkumar Senguttuvan et al.

CHEMISTRY OF MATERIALS (2011)

Article Chemistry, Multidisciplinary

Quasiemulsion-Templated Formation of α-Fe2O3 Hollow Spheres with Enhanced Lithium Storage Properties

Bao Wang et al.

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2011)

Article Chemistry, Physical

In-Plane Vacancy-Enabled High-Power Si-Graphene Composite Electrode for Lithium-Ion Batteries

Xin Zhao et al.

ADVANCED ENERGY MATERIALS (2011)