4.7 Article

Boosting cobalt ditelluride quantum-rods anode materials for excellent potassium-ion storage via hierarchical physicochemical encapsulation

Related references

Note: Only part of the references are listed.
Article Engineering, Environmental

Sb2Te3 hexagonal nanoplates as conversion-alloying anode materials for superior potassium-ion storage via physicochemical confinement effect of dual carbon matrix

Shaokun Chong et al.

Summary: Nanoplate-structured Sb2Te3 anchored on graphene and N-doped C (Sb2Te3@rGO@NC) is used as an anode material for potassium-ion batteries, exhibiting a dual encapsulation effect that can effectively restrain large volume expansion and enhance electronic transfer and ion adsorption. The resulting Sb2Te3@rGO@NC electrode delivers high charge capacity, rate capability, and long-term lifetime, demonstrating the potential of Sb2Te3-based anodes for potassium-ion batteries and providing insights into the K-ion storage mechanism.

CHEMICAL ENGINEERING JOURNAL (2023)

Article Materials Science, Multidisciplinary

SnTe nanoparticles physicochemically encapsulated by double carbon as conversion-alloying anode materials for superior potassium-ion batteries

Ting Li et al.

Summary: SnTe@rGO@NC, formed by wrapping SnTe nanoparticles with graphene and nitrogen-doped carbon, improves the performance of potassium-ion batteries. It exhibits good interfacial stability, electron transmission, and adsorption and diffusion of potassium ions. Experimental results demonstrate its high initial charge capacity, superior rate performance, and outstanding cyclic stability.

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY (2023)

Article Nanoscience & Nanotechnology

Dual-Type Carbon Confinement Strategy: Improving the Stability of CoTe2 Nanocrystals for Sodium-Ion Batteries with a Long Lifespan

Weiming Zhao et al.

Summary: This study develops a CoTe2@3DPNC electrode with high reversible capacity and outstanding long-term cycling performance for sodium-ion batteries. The electrode is prepared by generating uniform CoTe2 nanoparticles from Co nanoparticles coated with polyvinylpyrrolidone in a three-dimensional porous carbon matrix. The study reveals a battery-capacitive dual-model Na-storage mechanism and provides a valuable strategy for the rational design of long-life electrodes for advanced rechargeable batteries.

ACS APPLIED MATERIALS & INTERFACES (2022)

Article Chemistry, Multidisciplinary

Charge Relays via Dual Carbon-Actions on Nanostructured BiVO4 for High Performance Photoelectrochemical Water Splitting

Yuxiang Wang et al.

Summary: Carbon doping and introduction of carbon quantum dots can improve the electronic conductivity and light absorption capability of BiVO4, thus enhancing the separation and transfer of photo-generated charges. Electroplating a polyaniline layer onto the catalyst can sustain a stable photocurrent density for a long time.

ADVANCED FUNCTIONAL MATERIALS (2022)

Article Materials Science, Multidisciplinary

Facile fabrication of FeTe/reduced graphene oxide nanocomposites for sodium (potassium) storage

Xiaojuan Wang et al.

Summary: FeTe/reduced graphene oxide (RGO) nanocomposites were synthesized using a hydrothermal method followed by an anneal process. The FeTe/RGO electrode exhibited stable cyclability and good rate capability in both Na-ion and K-ion batteries, with reversible capacities of 360 mAh g(-1) and 320 mAh g(-1) respectively after 100 cycles at 100 mA g(-1). The superior electrochemical properties of FeTe/RGO were attributed to its unique structure which can accommodate volume variation and enhance electronic conductivity, making it potentially favorable for applications in electrochemical devices.

JOURNAL OF MATERIALS SCIENCE (2022)

Article Chemistry, Multidisciplinary

Nitrogen and Oxygen Co-Doped Porous Hard Carbon Nanospheres with Core-Shell Architecture as Anode Materials for Superior Potassium-Ion Storage

Shaokun Chong et al.

Summary: The use of nitrogen and oxygen co-doped yolk-shell carbon sphere as anode material for potassium-ion batteries shows improved electrochemical performance including high initial charge capacity and cycling stability. Experimental results demonstrate the potential for high-performance hard carbon anode for PIBs.

SMALL (2022)

Review Chemistry, Physical

Recent progress in quantum dots based nanocomposite electrodes for rechargeable monovalent metal-ion and lithium metal batteries

Rangaswamy Puttaswamy et al.

Summary: Engineering electrode architecture using quantum dots (QDs) in rechargeable batteries offers advantages such as abundant active edges, large surface area, and the need for suitable support to prevent aggregation. Future research should focus on further exploring the application of QDs in high-performance electrodes.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Nanoscience & Nanotechnology

Highly Stable Potassium-Ion Battery Enabled by Nanoengineering of an Sb Anode

Sungsik Choi et al.

Summary: In this study, we present the nanoengineering of anode materials for potassium-ion batteries (KIBs) by using a conductive and stress-relieving network of carbon quantum dots (CQDs) and poly(3,4-ethylene dioxythiophene) poly(styrenesulfonate) (PEDOT:PSS). The Sb particles with nanolevel size and fast ionic channels are prepared with the assistance of CQDs, while PEDOT:PSS offers enhanced electron/ion pathways and maintains the integrity of the composite electrode. The prepared Sb anode exhibits high specific capacity and excellent stability in KIB.

ACS APPLIED MATERIALS & INTERFACES (2022)

Article Chemistry, Multidisciplinary

An Open-Ended Ni3S2-Co9S8 Heterostructures Nanocage Anode with Enhanced Reaction Kinetics for Superior Potassium-Ion Batteries

Shipeng Zhang et al.

Summary: The Ni-Co-S@rGO nanocages were designed as anode materials for potassium-ion batteries, exhibiting excellent performance in reducing K+ diffusion length, improving reaction kinetics, and achieving high reversible capacity and low capacity degradation. Finite-element-simulation in situ characterizations revealed the unique structural advantages and electrochemical reaction mechanisms of Ni-Co-S@rGO, providing important guidance for designing high-performance energy-storage materials.

ADVANCED MATERIALS (2022)

Article Astronomy & Astrophysics

Parallel Electron Heating through Landau Resonance with Lower Hybrid Waves at the Edge of Reconnection Ion Jets

Yong Ren et al.

Summary: We investigate lower hybrid waves in magnetic reconnection at the flank magnetopause using Magnetospheric Multiscale data. Our observations show intense emissions of lower hybrid waves at the density boundary of the reconnection ion jet, along with heating signatures in electrons parallel to the magnetic field. We find that the electron fluxes parallel to the magnetic field exhibit oscillations at the same frequency as the lower hybrid waves near the Landau resonance energy, and are in phase or antiphase with the wave parallel electric field. These observations provide direct evidence for Landau resonance and suggest a role for wave-particle interactions in the energy conversion chain of reconnection ion jets.

ASTROPHYSICAL JOURNAL (2022)

Article Chemistry, Physical

Structural engineering of tin sulfides anchored on nitrogen/phosphorus dual-doped carbon nanofibres in sodium/potassium-ion batteries

Yiyi Wang et al.

Summary: In this study, waste chlorella was used as a reactor and phosphorous source to design few-layered tin sulfides immobilized on nitrogen and phosphorus dual-doped carbon nanofibres. The material exhibited impressive sodium/potassium ion storage performance and promising long-life cycling performance, suggesting its great potential for sodium/potassium-ion battery applications.

CARBON (2022)

Article Nanoscience & Nanotechnology

Building core-shell FeSe2@C anode electrode for delivering superior potassium-ion batteries

Lingli Liu et al.

Summary: In this work, a core-shell structure of FeSe2@C composite was designed using a facile hydrothermal method. The FeSe2 particles as the 'core' and the carbon layer as the 'shell' showed good synergistic effect in alleviating volume expansion and improving electrical conductivity, achieving fast potassium storage. The FeSe2@C electrode with core-shell structure exhibited high capacity, coulombic efficiency, and rate capacity, providing a basis for the further development of metal selenides in flexible electrodes.

NANOTECHNOLOGY (2022)

Article Chemistry, Physical

Homologous MXene-Derived Electrodes for Potassium-Ion Full Batteries

Lanju Sun et al.

Summary: The development of potassium-ion battery (PIB) electrode materials is crucial for next-generation energy storage systems. Metal-organic frameworks (MOFs) have potential as electrode materials, but their performance in PIBs is not satisfactory. MXene-derived MOF nodes (NMD-MOF) are unlocked and used as anodes in PIB, leading to substantially increased capacity and excellent performance. Furthermore, combining NMD-MOF anode with MXene-derived K+-intercalated vanadium oxide (MD-KVO) cathode enables the assembly of a PIB with high capacity and energy/power density.

ADVANCED ENERGY MATERIALS (2022)

Review Chemistry, Multidisciplinary

Perspectives on Iron Oxide-Based Materials with Carbon as Anodes for Li- and K-Ion Batteries

Mario Valvo et al.

Summary: The demand for large-scale and sustainable energy storage systems is increasing, leading to the emergence of potassium-ion batteries as a potential alternative to lithium-ion batteries. However, the development of anode materials for potassium-ion batteries still faces challenges. Iron oxides are promising anode materials due to their high theoretical capacity, low cost, and abundant reserves, but they also have limitations.

NANOMATERIALS (2022)

Article Chemistry, Multidisciplinary

Doping-Induced Electronic/Ionic Engineering to Optimize the Redox Kinetics for Potassium Storage: A Case Study of Ni-Doped CoSe2

Hui Shan et al.

Summary: This study demonstrates that heteroatom doping can effectively modify the crystal structure stability, charge/ion state, and bandgap of active materials, thus modulating the kinetics of electrode materials and enhancing the electron and K+ ion transfer in Ni-doped CoSe2 embedded in carbon nanocomposites.

ADVANCED SCIENCE (2022)

Review Chemistry, Multidisciplinary

Sn-, Sb- and Bi-Based Anodes for Potassium Ion Battery

Yan Gu et al.

Summary: Potassium ion batteries (PIBs) have great potential in energy storage devices due to the abundant resources of potassium. However, the poor lifespan of PIB anodes restricts their commercial applications. Recent advances in alloying anodes, such as ultra-small nanoparticles, hetero-element doping, and electrolyte optimization, have shown promise in improving the electrochemical properties of PIBs. This review provides an outlook on the nanostructures and synthesis methods of alloying-type materials, and encourages further research for practical applications.

CHEMICAL RECORD (2022)

Article Chemistry, Multidisciplinary

Nitrogen-Doped Carbon-Encapsulated Ordered Mesoporous SiOx as Anode for High-Performance Lithium-Ion Batteries

Yang Ling et al.

Summary: SiOx@NC is a core-shell structured composite material that can effectively overcome the capacity decay issues in lithium-ion batteries. It also exhibits good electrical conductivity and charge/ion transfer kinetics.

CHEMISTRY-AN ASIAN JOURNAL (2022)

Article Energy & Fuels

Promoting superior K-ion storage of Bi2S3 nanorod anode via graphene physicochemical protection and electrolyte stabilization effect

Lingling Yuan et al.

Summary: In this study, Bi2S3 nano-rods wrapped by reduced graphene oxide were developed as anode materials for potassium-ion batteries. The composite exhibited excellent electrochemical kinetics and structure stability, and stored potassium ions through a dual mechanism of conversion-alloying. The composite also showed high cycling stability and capacity retention.

APPLIED ENERGY (2022)

Article Engineering, Environmental

An a-MnSe nanorod as anode for superior potassium-ion storage via synergistic effects of physical encapsulation and chemical bonding

Ting Li et al.

Summary: In this study, alpha-MnSe@NC@graphene composite was developed as an anode material for potassium ion batteries. The composite exhibited excellent cycling stability, rate capability, and long lifespan, attributed to its superior electrode integrity and conductive network. The conversion mechanism of the composite was verified through ex situ TEM and XPS analysis.

CHEMICAL ENGINEERING JOURNAL (2022)

Article Chemistry, Physical

Fe3C encapsulated in N-doped carbon as potassium ion battery anode with high capacity and long-term cycling performance

Yandong Xie et al.

Summary: A general method was introduced for preparing nano composites from metal-organic frameworks coated with ammonium ferric citrate, resulting in Fe3C@MOF-C/N composite material with high structural stability and electrical conductivity. As a PIB anode, Fe3C@MOF-C/N-1 exhibited high capacity and cycling performance, showing potential application in potassium ion batteries.

JOURNAL OF ALLOYS AND COMPOUNDS (2022)

Article Chemistry, Physical

Stabilizing intermediate phases via the efficient confinement effects of the SnS2-SPAN fibre composite for ultra-stable half/full sodium/potassium-ion batteries

Yiyi Wang et al.

Summary: This study develops suitable anode materials for sodium/potassium-ion batteries, which have the potential to replace lithium-ion batteries. The fabricated composite electrode exhibits high capacities and superior long-life cycling capability, making it a promising candidate for electrochemical energy storage devices.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Energy & Fuels

Promoting superior K-ion storage of Bi2S3 nanorod anode via graphene physicochemical protection and electrolyte stabilization effect

Lingling Yuan et al.

Summary: In this study, Bi2S3 nano-rods wrapped by reduced graphene oxide are used as anodes for potassium-ion storage, showing excellent electrochemical kinetics and structure stability, resulting in high cycling stability and capacity retention.

APPLIED ENERGY (2022)

Article Chemistry, Physical

Electrochemical phase evolution of tetradymite-type Bi2Te3 in lithium, sodium and potassium ion half cells

Conrad H. R. Gillard et al.

Summary: Tetradymite-type Bi2Te3 is synthesized via a solid-state method and its electrochemical phase evolution upon discharge against Li, Na, and K counter-electrodes is detailed. Rietveld analysis reveals that Li and K systems undergo a sequence of intercalation, conversion, and alloying reactions. Bi2Te3 shows high initial capacities for Li, Na, and K cells, but poor cyclabilities due to large volume changes and irreversibilities. Gravimetric capacities for Li, Na, and K half-cells decrease significantly after several cycles.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Lattice strain and atomic replacement of CoO6 octahedra in layered sodium cobalt oxide for boosted water oxidation electrocatalysis

Lan Sun et al.

Summary: Layered alkali metal oxides offer possibilities to tune intrinsic activity for water oxidation by regulating the intralayer structure. Electrochemical desodiation tuning method can enhance the efficiency and activity of intralayer doped Na0.7CoO2 catalysts.

APPLIED CATALYSIS B-ENVIRONMENTAL (2021)

Article Chemistry, Physical

Achieving High-Performance Metal Phosphide Anode for Potassium Ion Batteries via Concentrated Electrolyte Chemistry

Fuhua Yang et al.

Summary: Concentrated electrolyte is used to improve the cycling stability of potassium metal and potassium-ion batteries, mitigating the capacity degradation of metal phosphides and providing a feasible strategy for building high-energy-density potassium-ion batteries.

ADVANCED ENERGY MATERIALS (2021)

Article Chemistry, Multidisciplinary

CoPSe: A New Ternary Anode Material for Stable and High-Rate Sodium/Potassium-Ion Batteries

Yutong Feng et al.

Summary: The CoPSe/NC material prepared in this study is an excellent anode material for sodium/potassium-ion batteries, with ultra stability and high rate characteristics, higher theoretical capacity and lower discharge voltage compared to CoSe2. Its outstanding performance is verified through a series of characterizations and calculations.

ADVANCED MATERIALS (2021)

Article Engineering, Environmental

Recent advance of biomass-derived carbon as anode for sustainable potassium ion battery

Xiaomin Yuan et al.

Summary: This review highlights the advantages of biomass-based carbon materials as anode materials for potassium-ion batteries, showcasing their elaborate biological structures, strong physicochemical adsorptions, environmental benignity, and cost effectiveness, making them ideal candidates for biocompatible energy-storage systems. The intrinsic diversity of bio-microstructures in biomass-based carbon materials provides various merits for rapid ion/electron channels, strengthened mechanical substrates, and in-situ templates for further electrode designs, enabling structurally-tuned surface chemistry in potassium-ion batteries anodes.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Chemistry, Physical

The structural evolution of tetradymite-type Sb2Te3 in alkali ion batteries

Conrad Gillard et al.

Summary: Tetradymite-type Sb2Te3 is synthesized using a solid-state method and its electrochemical behavior in Li, Na, and K half-cells is investigated. Conversion and alloying reactions are observed in all systems, with direct evidence of alloying and intercalation reactions seen in Li system. Preliminary investigation of the magnetic properties of Li-intercalated Sb2Te3 shows no significant influence on the magnetic phase transition temperature or induction of superconductivity. High initial capacities are observed for all systems, but rapid capacity fade is noted due to large volume changes and irreversibilities associated with the conversion and alloying reactions.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Review Chemistry, Physical

A comprehensive review of carbons anode for potassium-ion battery: fast kinetic, structure stability and electrochemical

Bo Wang et al.

Summary: This review discusses the current status and challenges of potassium-ion batteries, analyzes the application of carbon materials in potassium-ion batteries, and proposes methods to improve kinetic and structural stability.

JOURNAL OF POWER SOURCES (2021)

Article Chemistry, Physical

All-carbon-frameworks enabled thick electrode with exceptional high-areal-capacity for Li-Ion storage

Guo Li et al.

Summary: This study utilized the concept of thick electrode to design a high-capacity lithium-ion battery anode with a 3D all-carbon framework. By incorporating GNP, the electrode achieved easier Li-ion intercalation/deintercalation pathway, promoting pseudocapacitive and surface adsorption Li-ion storage.

CARBON (2021)

Article Multidisciplinary Sciences

Sb2S3-based conversion-alloying dual mechanism anode for potassium-ion batteries

Shaokun Chong et al.

Summary: The study demonstrates the construction of Sb2S3@rGO@NC as an anode for PIBs, achieving high initial charge capacity and long cycle life. In situ characterizations confirm the electrode undergoes a multi-electron transfer process and the dual mechanisms of K-ion insertion/extraction.

ISCIENCE (2021)

Article Nanoscience & Nanotechnology

A Novel Tin-Bonded Silicon Anode for Lithium-Ion Batteries

Zhe Dong et al.

Summary: A novel Sn-bonded Si anode is proposed, showing superior cyclic stability and high rate performance by improving electronic conductivity and enhancing adhesive strength of the electrode.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Nanoscience & Nanotechnology

Rational Design of Embedded CoTe2 Nanoparticles in Freestanding N-Doped Multichannel Carbon Fibers for Sodium-Ion Batteries with Ultralong Cycle Lifespan

Wei Zhang et al.

Summary: A stable CoTe2/carbon anode with ultralong cycle life for sodium-ion batteries is reported, demonstrating high capacity and stable energy storage. The electrode exhibits pseudocapacitive-dominated behavior and high-rate performance, making it a promising candidate for next-generation ultralong cycle-life SIBs anodes.

ACS APPLIED MATERIALS & INTERFACES (2021)

Article Chemistry, Multidisciplinary

Orthorhombic Cobalt Ditelluride with Te Vacancy Defects Anchoring on Elastic MXene Enables Efficient Potassium-Ion Storage

Xiaodan Xu et al.

Summary: A P-doping-induced orthorhombic CoTe2 nanowires with Te vacancy defects supported on MXene superstructure has been designed and prepared, demonstrating high potassium-storage performance in terms of reversible capacity, rate capability, and long-term cyclability. Kinetics analysis and first-principles calculations reveal superior pseudocapacitive property, high electronic conductivity, and favorable K+ ion adsorption and diffusion capability for fast K+ ion storage.

ADVANCED MATERIALS (2021)

Article Chemistry, Physical

Structural engineering of sulfur-doped carbon encapsulated bismuth sulfide core-shell structure for enhanced potassium storage performance

Changlai Wang et al.

Summary: A core-shell structure Bi2S3@SC was designed as a novel anode material for potassium-ion batteries, showing excellent electrochemical performance with high specific capacity and rate capability. Density functional theory calculations revealed low diffusion barrier of potassium ions in Bi2S3, providing theoretical basis for the design of high-performance anode materials.

NANO RESEARCH (2021)

Article Nanoscience & Nanotechnology

Weyl semimetal orthorhombic Td-WTe2 as an electrode material for sodium- and potassium-ion batteries

Davi Marcelo Soares et al.

Summary: The orthorhombic tungsten ditelluride Td-WTe2 has shown promising performance as an electrode material for both sodium and potassium-ion batteries, with higher stability and capacity retention in potassium-ion batteries compared to sodium-ion batteries. This superior performance is attributed to the smaller desolvation activation energy of potassium-ions in the propylene carbonate-based electrolyte, allowing for higher mobility and better electrochemical performance. Additionally, the mechanisms of electrochemical insertion and extraction of sodium and potassium-ions in Td-WTe2 are also discussed.

NANOTECHNOLOGY (2021)

Article Chemistry, Multidisciplinary

Sub-Thick Electrodes with Enhanced Transport Kinetics via In Situ Epitaxial Heterogeneous Interfaces for High Areal-Capacity Lithium Ion Batteries

Shuhui Zhou et al.

Summary: This study introduces a new concept of sub-thick electrodes to mitigate the Li-ion storage performance of electrodes. By using commercial nickel foam (NF) to develop a monolithic 3D anode with rich in situ heterogeneous interfaces (Cu3P-Ni2P-NiO, denoted NF-CNNOP), the adhesive force of the active materials on NF is reinforced and additional capacity is contributed to the electrode. The enhanced Li-ion storage capability is attributed to the in situ interfacial engineering within the NiO, Ni2P, and Cu3P and the 3D consecutive electron conductive network.

SMALL (2021)

Article Chemistry, Physical

Conversion-alloying dual mechanism anode: Nitrogen-doped carbon-coated Bi2Se3 wrapped with graphene for superior potassium-ion storage

Kuan-Ting Chen et al.

Summary: The construction of an anode material with a conversion-alloying dual mechanism has facilitated the development of high-energy density potassium-ion batteries. The Bi2Se3@NC@rGO composite exhibits excellent electrode integrity and electrochemical kinetics, achieving a high reversible capacity, great rate capability, and ultra-long cycling life. The K-ion full cell assembled using K2Ni[Fe(CN)(6)] cathode also contributes to a high-energy density and excellent cyclability.

ENERGY STORAGE MATERIALS (2021)

Review Chemistry, Multidisciplinary

Research progress in transition metal chalcogenide based anodes for K-ion hybrid capacitor applications: a mini-review

Muhammad Sajjad et al.

Summary: Metal ion capacitors, especially potassium ion hybrid capacitors (PIHCs), are attracting attention as a new type of energy storage system due to their high power density. Transition metal chalcogenide (TMC)-based materials are being considered as emerging candidates for PIHCs, offering unique physical and chemical properties. However, challenges such as unsatisfactory reaction kinetics and low energy density still need to be addressed.

RSC ADVANCES (2021)

Article Chemistry, Multidisciplinary

Foldable potassium-ion batteries enabled by free-standing and flexible SnS2@C nanofibers

Deping Li et al.

Summary: The study confines SnS2 in N, S co-doped carbon nanofibers as anode materials for potassium-ion batteries, demonstrating high performance and stability. Through experiments and theoretical calculations, the synergistic effects of the N, S co-doping strategy in boosting K-ion transport kinetics are revealed.

ENERGY & ENVIRONMENTAL SCIENCE (2021)

Article Engineering, Environmental

FeSe2/nitrogen-doped carbon as anode material for Potassium-ion batteries

Yanzhen Liu et al.

CHEMICAL ENGINEERING JOURNAL (2020)

Article Nanoscience & Nanotechnology

Superior electrochemical performance of layered WTe2as potassium-ion battery electrode

Davi Marcelo Soares et al.

NANOTECHNOLOGY (2020)

Article Chemistry, Analytical

CTAB-modified Ni2P@ACNT composite with enhanced supercapacitive and lithium/sodium storage performance

Yuanxing Zhang et al.

JOURNAL OF ELECTROANALYTICAL CHEMISTRY (2020)

Article Chemistry, Physical

A small-strain niobium nitride anode with ordered mesopores for ultra-stable potassium-ion batteries

Jisung Lee et al.

JOURNAL OF MATERIALS CHEMISTRY A (2020)

Review Chemistry, Physical

Advanced Carbon-Based Anodes for Potassium-Ion Batteries

Xuan Wu et al.

ADVANCED ENERGY MATERIALS (2019)

Article Electrochemistry

CoTe nanorods/rGO composites as a potential anode material for sodium-ion storage

Yang Ding et al.

ELECTROCHIMICA ACTA (2019)

Article Chemistry, Multidisciplinary

Pistachio-Shuck-Like MoSe2/C Core/Shell Nanostructures for High-Performance Potassium-Ion Storage

Wei Wang et al.

ADVANCED MATERIALS (2018)

Article Chemistry, Multidisciplinary

Achieving high gravimetric energy density for flexible lithium-ion batteries facilitated by core-double-shell electrodes

Muhammad-Sadeeq Balogun et al.

ENERGY & ENVIRONMENTAL SCIENCE (2018)

Article Chemistry, Physical

Cobalt telluride/graphene composite nanosheets for excellent gravimetric and volumetric Na-ion storage

Guanjun Zhang et al.

JOURNAL OF MATERIALS CHEMISTRY A (2018)

Article Chemistry, Physical

Solvation and Dynamics of Sodium and Potassium in Ethylene Carbonate from ab Initio Molecular Dynamics Simulations

Tuan Anh Pham et al.

JOURNAL OF PHYSICAL CHEMISTRY C (2017)

Article Chemistry, Multidisciplinary

Intrinsic conductivity optimization of bi-metallic nickel cobalt selenides toward superior-rate Na-ion storage

Chen Wu et al.

MATERIALS CHEMISTRY FRONTIERS (2017)

Article Chemistry, Multidisciplinary

CoS Quantum Dot Nanoclusters for High-Energy Potassium-Ion Batteries

Hong Gao et al.

ADVANCED FUNCTIONAL MATERIALS (2017)

Article Chemistry, Multidisciplinary

Unconventionally Layered CoTe2 and NiTe2 as Electrocatalysts for Hydrogen Evolution

Xinyi Chia et al.

CHEMISTRY-A EUROPEAN JOURNAL (2017)

Article Chemistry, Physical

Synergistic-Effect-Controlled CoTe2/Carbon Nanotube Hybrid Material for Efficient Water Oxidation

Tzu-Hsiang Lu et al.

JOURNAL OF PHYSICAL CHEMISTRY C (2016)

Article Biophysics

Self-powered biosensor for ascorbic acid with a Prussian blue electrochromic display

Adrianna Zloczewska et al.

BIOSENSORS & BIOELECTRONICS (2014)