4.7 Article

Hierarchical porous N-doped functionalized reduced graphene oxide by 2-aminoanthraquinone for aqueous zinc-ion hybrid capacitors with high energy density and ultralong-life

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Review Chemistry, Multidisciplinary

Insights into 2D/2D MXene Heterostructures for Improved Synergy in Structure toward Next-Generation Supercapacitors: A Review

Kabeer Nasrin et al.

Summary: This review investigates the material design and electrochemical performance of 2D/2D MXene heterostructures for supercapacitors. The synthesis and energy storage properties of MXene are discussed, along with different preparation methods and the synergistic enhancement of MXene with other materials. Future research directions, including fundamental mechanism investigations and material optimizations, are outlined.

ADVANCED FUNCTIONAL MATERIALS (2022)

Article Chemistry, Physical

High energy-power density Zn-ion hybrid supercapacitors with N/P co-doped graphene cathode

Yue Zhao et al.

Summary: By synthesizing N/P co-doped graphene (NPG) through a one-step hydrothermal method, this study highlights the efficient synthesis and excellent performance of NPG cathode materials, promoting the rapid development and great application of high-performance Zn-ion hybrid capacitors.

JOURNAL OF POWER SOURCES (2022)

Article Chemistry, Physical

N, P, and S co-doped 3D porous carbon-architectured cathode for high-performance Zn-ion hybrid capacitors

Kezheng Shang et al.

Summary: In this study, a hierarchical porous carbon sphere (HPCS) co-doped with N, P and S is developed, which features a three-dimensional porous frame structure to enhance conductivity and provide fast kinetics and short mass transfer pathways. The Zn-ion hybrid capacitors (ZIHCs) using HPCS-900 as the cathode material exhibit high capacity, excellent energy density and power density. The HPCS-900 also shows high stability with a capacity retention of 95.24% after 30,000 cycles.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Chemistry, Multidisciplinary

An Ultrafast, Durable, and High-Loading Polymer Anode for Aqueous Zinc-Ion Batteries and Supercapacitors

Zhixiao Xu et al.

Summary: An ultrafast, stable, and high-loading polymer anode for aqueous Zn-ion batteries and capacitors has been developed through the engineering of both the electrode and electrolyte. This polymer anode exhibits a low discharge potential, near-theoretical capacity, ultrahigh-loading capability, ultrafast rate, and ultralong lifespan.

ADVANCED MATERIALS (2022)

Article Engineering, Environmental

Two-step nitrogen and sulfur doping in porous carbon dodecahedra for Zn-ion hybrid supercapacitors with long term stability

Ying Yang et al.

Summary: Aqueous Zn-ion hybrid supercapacitors (ZHSCs) have the potential to be highly efficient energy storage devices due to their high theoretical capacity, low cost, and intrinsic safety. However, the lack of efficient cathode materials for reversible insertion/extraction of Zn2+ ions has posed a significant challenge to achieving high cycling-stability ZHSCs. In this study, researchers developed a facile two-step doping strategy to synthesize N, S-codoped porous carbon dodecahedra (N, S-PCD) as a high-performance cathode material for ultralong-life aqueous ZHSC. The N, S-PCD cathode demonstrated a specific capacity of 133.4 mA h-1 (300.2 F g-1) at 0.2 A g(-1) and a maximum energy density of 106.7 W h kg(-1) at a power density of 160 W kg-1. Furthermore, the ZHSC showed an ultra-long cycle life, retaining 97.1% capacity after 100,000 charge-discharge cycles (approximately 3960 hours), which is the longest lifespan reported for ZHSCs to date. Mechanism studies revealed that the dual-doping of N and S enhanced the chemical adsorption of Zn2+ ions and improved electronic conductivity, synergistically enhancing the Zn-ion storage performance.

CHEMICAL ENGINEERING JOURNAL (2022)

Article Materials Science, Multidisciplinary

2-Amino-3-chloro-1,4-naphthoquinone covalently anchored on reduced graphene oxide as all-carbon energy storage material

Yuying Yang et al.

Summary: This study presents the covalent connection of 2-amino-3-chloro-1,4-naphthoquinone (2-NTQ) to reduced graphene oxide (RGO) to obtain a new all-carbon electrode material (2-NTQ-RGO). The composite exhibits excellent capacitance performance by combining the advantages of the 2-NTQ molecules and RGO. Furthermore, the matching of electrode materials influences the performance of the supercapacitor.

DIAMOND AND RELATED MATERIALS (2022)

Review Green & Sustainable Science & Technology

A comprehensive review of stationary energy storage devices for large scale renewable energy sources grid integration

Abraham Alem Kebede et al.

Summary: This study investigates the current status and applicability of energy storage devices and identifies the most suitable types for grid support applications. Various criteria such as technical, economic, and environmental impact evaluations are considered to determine the characteristics and potentials of different storage technologies. The findings show that a hybrid solution with a combination of various storage devices is a viable option in the sector.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2022)

Article Chemistry, Physical

High-energy-density aqueous zinc-based hybrid supercapacitor-battery with uniform zinc deposition achieved by multifunctional decoupled additive

Shengnan Wang et al.

Summary: The traditional ZHS is upgraded to ZHSB with higher energy density by using a multifunctional decoupled additive MEP.Br, which has the merits of uniform Zn deposition, reduced polarization, increased capacity and stable complexation reaction.

NANO ENERGY (2022)

Article Materials Science, Multidisciplinary

Hierarchically nitrogen-doped mesoporous carbon nanospheres with dual ion adsorption capability for superior rate and ultra-stable zinc ion hybrid supercapacitors

Zhongyou Peng et al.

Summary: This work demonstrates the use of nitrogen-doped mesoporous carbon nanospheres for efficient zinc ion storage in aqueous zinc ion hybrid super-capacitors. The optimized nanospheres deliver high specific capacity, maximum energy density, and ultra-high power density. The study also fabricates a new type of planar zinc ion hybrid super-capacitor with outstanding low-temperature electrochemical performance and excellent integration.

SCIENCE CHINA-MATERIALS (2022)

Article Chemistry, Physical

Graphene oxide grafting naphthoquinone derivative with enhanced specific capacitance and energy density for zinc-ion hybrid supercapacitors

Ningmiao Zhao et al.

Summary: This study presents an efficient and affordable method to enhance the energy storage properties of graphene oxide (GO) by chemically bonding it with 2, 3-diamino-1, 4-naphthoquinone (DANQ). The GO-DANQ-72 exhibits significantly better performance in zinc-ion hybrid supercapacitors (ZIHSs), with higher specific capacitance, decent energy density, and great cyclic stability.

IONICS (2022)

Article Chemistry, Multidisciplinary

Hierarchically Porous Mesostructured Polydopamine Nanospheres and Derived Carbon for Supercapacitors

Guo Du et al.

Summary: Polydopamine (PDA), an artificial melanin material with similar properties to eumelanin, has attracted great interest due to its various functional groups, good biocompatibility, and photothermal conversion ability. This study proposes a self-assembly/etching method to prepare porous mesostructured PDA nanospheres, which exhibit high specific surface area and pore volume. The study also demonstrates the potential of using ordered mesoporous N-doped carbon microspheres (OMCMs) obtained from PDA as high-performance electrodes for supercapacitors.

LANGMUIR (2022)

Article Energy & Fuels

A novel organic molecule electrode based on organic polymer functionalized graphene for supercapacitor with high-performance

Long Jiao et al.

Summary: Organic synthesis strategy is used to tune the electrochemical behavior of organic molecules, offering more material choices for sustainable supercapacitors. A designed and synthesized organic polymer is found to achieve Faraday reaction with 4 electron transfers and exhibit high specific capacitance and good cycle stability. A graphene hydrogel is also prepared as a positive electrode for fabricating an asymmetrical supercapacitor. The resulting device shows promising potential with high energy density and good performance.

JOURNAL OF ENERGY STORAGE (2022)

Article Chemistry, Multidisciplinary

Compacting Electric Double Layer Enables Carbon Electrode with Ultrahigh Zn Ion Storage Capability

Xin Shi et al.

Summary: This study proposes a universal surface charge modulation strategy to enhance the capacitance of carbon materials by reducing the thickness of the electric double layer (EDL). Amino groups are used to increase the surface charge density and enhance the interaction between carbon electrodes and zinc ions, leading to a compacted EDL. The amino-functionalized porous carbon-based ZHSCs demonstrate a high capacity and excellent cycling stability in 1 M ZnCl2 electrolyte.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2022)

Article Energy & Fuels

Development and evaluation of Zn2+ ions hybrid supercapacitor based on ZnxMnO2-CNTs cathode

Danhong Ren et al.

Summary: A new type of Zn2+ ions hybrid supercapacitors (Zn-HSCs) has been developed in this study. The cathode material, ZnxMnO2-CNTs, not only has an ultra-high stability tunnel structure, but also exhibits high electrical conductivity, which significantly improves the cycling performance of the device.

APPLIED ENERGY (2022)

Article Engineering, Environmental

Enhancement of Zn-ion hybrid supercapacitors by using dual redox-active ions electrolytes

Yuan Wang et al.

Summary: This study proposes novel aqueous Zn-ion hybrid supercapacitors with dual redox-active ions enhanced electrolytes, resulting in a significantly higher specific capacity compared to traditional Zn-ion hybrid supercapacitors.

CHEMICAL ENGINEERING JOURNAL (2022)

Article Chemistry, Physical

Flexible reduced graphene oxide/V2O5 composite battery-type cathode and MXene capacitor-type anode for aqueous zinc ion hybrid supercapacitors with high energy density

Yi Wang et al.

Summary: A new configuration flexible zinc-ion hybrid supercapacitor based on composite films of RGO-V2O5 cathode and RGO-MXene anode in aqueous electrolyte shows excellent electrochemical performance, providing an essential strategy for synthesizing composite films for high performance flexible hybrid supercapacitors.

JOURNAL OF ALLOYS AND COMPOUNDS (2022)

Article Materials Science, Multidisciplinary

Functional group contributions for azo derivatives as anode materials for KIBs: A first-principles study

Hui-Li Tian et al.

Summary: The electrochemical properties of azo derivatives with different functional groups were studied using the first-principles method. It was found that the addition of functional groups improves the performance of these organic materials as anodes for potassium-ion batteries.

MATERIALS CHEMISTRY AND PHYSICS (2022)

Article Energy & Fuels

Efficient charge storage by ZnCo2S4 nanoflakes@MgCo2O4 nanorods composite in Mg2+/Zn2+/K+ conducting electrolytes

Ishita Naskar et al.

Summary: In this study, a unique binder-free composite cathode ZnCo2S4@MgCo2O4 is reported, which exhibits high electrical conductivity, fast ion diffusion, and abundant electrolyte-electroactive site interactions, leading to excellent capacitance performance and cycle life. The effect of different electrolytes on the redox behavior is evaluated, and the potential application of this configuration in consumer-electronic-devices is demonstrated.

JOURNAL OF ENERGY STORAGE (2022)

Article Chemistry, Physical

Redox-active sodium 3,4-dihydroxy anthraquinone-2-sulfonate anchored on reduced graphene oxide for high-performance Zn-ion hybrid capacitors

Kai Yang et al.

Summary: This study constructs high-energy and high-power density Zn-ion hybrid capacitors (ZIHCs) by introducing a pseudo-capacitance adsorption mechanism on a porous film. The sodium 3,4-dihydroxy anthraquinone-2-sulfonate (ARS) is anchored on a porous graphene aerogel film (PGAF-ARS) through strong pi-pi stacking, providing abundant active sites for the adsorption/desorption of Zn2+. The porous structure of the film ensures rapid electron/ion transfer. The PGAF-ARS-based ZIHCs exhibit high specific capacity, excellent capacity retention rate, ultra-high energy density, and maximum power density.

JOURNAL OF MATERIALS CHEMISTRY A (2022)

Article Chemistry, Multidisciplinary

An aqueous zinc-ion hybrid super-capacitor for achieving ultrahigh-volumetric energy density

Li Zhang et al.

Summary: In this study, a zinc-ion hybrid super-capacitor with high volumetric energy density and superb cycle stability was successfully constructed, showing excellent battery performance. By utilizing the unique structure and active sites of graphene hydrogel, this capacitor demonstrated significant advantages in both volumetric energy density and power density.

CHINESE CHEMICAL LETTERS (2021)

Article Chemistry, Multidisciplinary

Nanoarchitectured Design of Vertical-Standing Arrays for Supercapacitors: Progress, Challenges, and Perspectives

Junlei Qi et al.

Summary: Vertical-standing arrays have attracted great interest as electrode materials for supercapacitors due to their unique structural and compositional characteristics. This review summarizes recent progress in synthesizing vertical-standing arrays and discusses strategies to improve their electrochemical performance, as well as outlining challenges and possible directions for future development.

ADVANCED FUNCTIONAL MATERIALS (2021)

Article Chemistry, Physical

Boosting lithium storage by facile functionalization of graphene oxide nanosheets via 2-aminoanthraquinone

Pengpeng Chen et al.

Summary: This study reported a novel method for functionalization of graphene oxide using 2-aminoanthraquinone, leading to improved electrochemical performance in terms of capacity and cycling stability. The as-prepared nanocomposites exhibit high specific capacity and cycling performance.

CARBON (2021)

Article Chemistry, Physical

Nickel sulfide/activated carbon nanotubes nanocomposites as advanced electrode of high-performance aqueous asymmetric supercapacitors

Yinhui Ouyang et al.

Summary: Hexagonal nickel sulfide is widely used for supercapacitors due to its high theoretical specific capacitance, but its poor electrical conductivity and agglomeration issues hinder practical application. By designing composite materials with activated carbon nanotubes, the agglomeration of nickel sulfide nanoparticles is effectively inhibited, resulting in improved supercapacitor behaviors. The composite structure of NiS/ACNTs hybrid electrode delivers high specific capacitance and good capacitance retention in asymmetric supercapacitors, showing great potential for high electrochemical performance.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Redox-active p-phenylenediamine functionalized reduced graphene oxide film through covalently grafting for ultrahigh areal capacitance Zn-ion hybrid supercapacitor

Yali Xu et al.

Summary: Introducing p-phenylenediamine as a redox-active spacer in graphene film can enhance interlayer distance, expose more ion-accessible area, and provide significant pseudocapacitance through reversible redox reactions. This approach leads to improved electrochemical performance in Zn-ion hybrid supercapacitors.

JOURNAL OF POWER SOURCES (2021)

Article Electrochemistry

A green and sustainable organic molecule electrode prepared by fluorenone for more efficient energy storage

Liwen Lv et al.

Summary: In this study, an organic molecule electrode was reported, where 2,7-Dihydroxy-9-fluorenone (DHFO) molecules are anchored on highly conductive graphene sheets. The DHFO/rGO composite showed high specific capacitance and satisfactory capacitance retention in an H2SO4 aqueous electrolyte. The asymmetrical supercapacitor assembled with DHFO/rGO and AQ/rGO exhibited a maximum energy density of 28.57 Wh kg(-1) and good cycle stability.

ELECTROCHIMICA ACTA (2021)

Article Chemistry, Physical

Strong oxidation induced quinone-rich dopamine polymerization onto porous carbons as ultrahigh-capacity organic cathode for sodium-ion batteries

Chao Huangfu et al.

Summary: The study involves the synthesis of PC-PDA-APS with high specific capacity and excellent rate performance using a superfast heterogeneous nucleation process. The synergistic effect of a 3D carbon skeleton, ultrathin PDA coating, and high quinone content significantly enhances the performance of sodium-organic cathode.

ENERGY STORAGE MATERIALS (2021)

Article Chemistry, Multidisciplinary

Synthesis and Application of Naphthalene Diimide as an Organic Molecular Electrode for Asymmetric Supercapacitors with High Energy Storage

Fuquan Ma et al.

Summary: A new redox-active organic molecule NDI was synthesized and used to modify reduced graphene oxide, forming an organic molecular electrode with excellent performance. Another positive electrode GH-DN was prepared by hydrothermal method. An asymmetric device ASC was assembled with GH-DN as the positive electrode and rGO-NDI as the negative electrode, achieving a specific capacitance of 111.3 F g(-1) and lighting up 81 LEDs at high energy density.

ADVANCED MATERIALS INTERFACES (2021)

Article Engineering, Environmental

Combustion conversion of wood to N, O co-doped 2D carbon nanosheets for zinc-ion hybrid supercapacitors

Gaobo Lou et al.

Summary: A N, O co-doped two-dimensional carbon nanosheet material is successfully fabricated via one-step combustion conversion of wood for excellent cathode material in zinc ion hybrid supercapacitors. The resulting material shows a uniform structure, high specific surface area, and outstanding electrochemical performance, leading to superior specific capacity, high rate capability, and attractive energy density in ZHS.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Chemistry, Physical

High-yield preparation of molybdenum disulfide/polypyrrole hybrid nanomaterial with non-covalent interaction and its supercapacitor application

Yun Ki Kim et al.

Summary: The MoS2/polypyrrole (MPY) hybrid nanomaterial prepared by sonochemical exfoliation and chemical oxidative polymerization exhibits high surface conductivity and excellent specific capacitance, showing promising performance in supercapacitors.

JOURNAL OF ALLOYS AND COMPOUNDS (2021)

Article Chemistry, Physical

Adapting a Kinetics-Enhanced Carbon Nanostructure to Li/Na Hybrid Water-in-Salt Electrolyte for High-Energy Aqueous Supercapacitors

Cheng Long et al.

Summary: This study tackles the issue of poor electrolyte kinetics within popular activated carbon electrodes by fabricating multimodal porous carbon nanostructures, resulting in excellent ion transport kinetics response and rate capability in H2SO4 electrolyte. The research also develops a water-in-salt electrolyte to enhance energy capacity, power response, and service lifespan of supercapacitors.

ACS APPLIED ENERGY MATERIALS (2021)

Article Chemistry, Physical

An anthraquinone-decorated graphene hydrogel based on carbonized cotton fibers for flexible and high performance supercapacitors

Mengying Jia et al.

Summary: A simple and facile method for fabricating a modified porous graphene hydrogel electrode using carbonized cotton fiber substrate and graphene is introduced. The resulted DAQ-CGH composite exhibits high specific capacitance, excellent cycling stability, and mechanical flexibility.

SUSTAINABLE ENERGY & FUELS (2021)

Review Chemistry, Multidisciplinary

Toward commercial-level mass-loading electrodes for supercapacitors: opportunities, challenges and perspectives

Wei Guo et al.

Summary: Supercapacitors, with fast charging/discharging rate and long lifespan, show potential for next generation energy supply. However, a significant gap between research and practical requirements hinders progress, calling for new techniques to meet commercial needs. While advancements have been made in tailor-made electrode materials, challenges remain in achieving commercial-level mass loading.

ENERGY & ENVIRONMENTAL SCIENCE (2021)

Article Materials Science, Multidisciplinary

Waste polyurethane foam filler-derived mesoporous carbons as superior electrode materials for EDLCs and Zn-ion capacitors

Chunhai Jiang et al.

DIAMOND AND RELATED MATERIALS (2020)

Review Nanoscience & Nanotechnology

Organic Electrode Materials for Metal Ion Batteries

John J. Shea et al.

ACS APPLIED MATERIALS & INTERFACES (2020)

Article Chemistry, Multidisciplinary

Sewable and Cuttable Flexible Zinc-Ion Hybrid Supercapacitor Using a Polydopamine/Carbon Cloth-Based Cathode

Cong Huang et al.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2020)

Article Engineering, Electrical & Electronic

Aqueous V2O5/activated carbon zinc-ion hybrid capacitors with high energy density and excellent cycling stability

Xinpei Ma et al.

JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS (2019)

Article Engineering, Environmental

1-Aminopyrene/rGO nanocomposites for electrochemical energy storage with improved performance

Weiyang Zhang et al.

CHEMICAL ENGINEERING JOURNAL (2019)

Article Nanoscience & Nanotechnology

High-Power and Ultralong-Life Aqueous Zinc-Ion Hybrid Capacitors Based on Pseudocapacitive Charge Storage

Liubing Dong et al.

NANO-MICRO LETTERS (2019)

Review Chemistry, Physical

Multiscale Graphene-Based Materials for Applications in Sodium Ion Batteries

Yan Zhang et al.

ADVANCED ENERGY MATERIALS (2019)

Article Materials Science, Multidisciplinary

Pyridine-Rich Covalent Organic Frameworks as High-Performance Solid-State Supercapacitors

Sattwick Haldar et al.

ACS MATERIALS LETTERS (2019)

Review Chemistry, Physical

Polyaniline supercapacitors

Ali Eftekhari et al.

JOURNAL OF POWER SOURCES (2017)