4.7 Article

Room-temperature liquid metal engineered iron current collector enables stable and dendrite-free sodium metal batteries in carbonate electrolytes

Related references

Note: Only part of the references are listed.
Article Chemistry, Physical

Liquid Alloy Interlayer for Aqueous Zinc-Ion Battery

Cheng Liu et al.

Summary: The study introduces an electrochemical-inert liquid gallium-indium alloy coating for zinc anodes in rechargeable metal batteries, addressing interfacial issues such as dendrite growth and electrode corrosion. The unique coating promotes inward deposition of zinc during charging, improving corrosion resistance and enabling a lower polarization. This effective approach shows promising results in terms of extended lifespan and improved capacity retention in full cells, indicating potential for future development of rechargeable metal batteries beyond zinc-storage systems.

ACS ENERGY LETTERS (2021)

Article Chemistry, Physical

Interfacial passivation by room-temperature liquid metal enabling stable 5 V-class lithium-metal batteries in commercial carbonate-based electrolyte

Chuanliang Wei et al.

Summary: Passivating the surface of lithium metal anodes with a liquid metal improves their stability by forming a lithium-based alloy framework. This framework alleviates corrosion, uneven lithium deposition, and unstable interfaces, leading to superior electrochemical performance when paired with high-voltage cathodes. This passivation strategy also holds potential for highly reactive sodium and potassium metal anodes.

ENERGY STORAGE MATERIALS (2021)

Article Chemistry, Multidisciplinary

Synthesis of SnS2 Ultrathin Nanosheets as Anode Materials for Potassium Ion Batteries

Rong Hu et al.

Summary: The research focuses on the performance and mechanism of SnS2 ultrathin nanosheets as anode materials for potassium (K) ion batteries. It is found that under optimized electrolyte conditions, SnS2 exhibits improved capacity and rate capability, with superior electrochemical performance attributed to reduced ion diffusion pathway and capacitor-dominated K-ion storage process.

CHEMICAL RESEARCH IN CHINESE UNIVERSITIES (2021)

Article Chemistry, Physical

Design of safe, long-cycling and high-energy lithium metal anodes in all working conditions: Progress, challenges and perspectives

Chuanliang Wei et al.

Summary: The review discusses the stability issues of lithium-metal anodes in extreme conditions and proposes strategies for improvement, aiming to draw more attention from researchers.

ENERGY STORAGE MATERIALS (2021)

Article Chemistry, Physical

Flexible and stable 3D lithium metal anodes based on self-standing MXene/COF frameworks for high-performance lithium-sulfur batteries

Chuanliang Wei et al.

Summary: A stable and dendrite-free Li-metal anode is obtained by designing a flexible and freestanding MXene/COF framework, promoting uniform Li nucleation and enhancing the electrochemical stability in corresponding symmetric cells. Li-S full cells with the modified Li-metal anode and sulfurized polyacrylonitrile cathode also show superior electrochemical performance.

NANO RESEARCH (2021)

Review Chemistry, Multidisciplinary

Covalent Organic Frameworks and Their Derivatives for Better Metal Anodes in Rechargeable Batteries

Chuanliang Wei et al.

Summary: COFs and their derivatives have effectively addressed the inherent issues of metal anodes, providing a new approach for constructing high-energy-density rechargeable metal batteries.

ACS NANO (2021)

Review Thermodynamics

Low-melting-point liquid metal convective heat transfer: A review

Yueguang Deng et al.

Summary: Low-melting-point liquid metal convection is a promising heat transfer technology in electronics thermal management and energy fields, with advantages such as high thermal conductivity, low melting point, and non-toxicity. This technology differs from traditional liquids in terms of heat transfer behavior and driving techniques. Although there is increasing research, a systematic description of gallium-based and bismuth-based liquid metal convection and its applications has not been reported yet.

APPLIED THERMAL ENGINEERING (2021)

Review Chemistry, Multidisciplinary

Recent advanced skeletons in sodium metal anodes

Chenxiao Chu et al.

Summary: Sodium metal anodes have high theoretical capacity and low redox potential, but face challenges such as dendrite growth. Using skeleton materials is an effective strategy to reduce local current density, inhibit dendrite growth, and alleviate volume expansion in sodium metal anodes.

ENERGY & ENVIRONMENTAL SCIENCE (2021)

Article Chemistry, Physical

A liquid metal assisted dendrite-free anode for high-performance Zn-ion batteries

Hao Jia et al.

Summary: This study proposes a method using a liquid metal coating as a protective layer to prevent dendrite growth on the zinc metal anode surface. The liquid metal layer effectively inhibits dendrite formation, accelerates zinc nucleation speed and electron transfer, improves charge transfer efficiency, significantly reduces interfacial resistance, and extends the cycling life of zinc batteries.

JOURNAL OF MATERIALS CHEMISTRY A (2021)

Review Chemistry, Multidisciplinary

Sustainable Recycling Technology for Li-Ion Batteries and Beyond: Challenges and Future Prospects

Ersha Fan et al.

CHEMICAL REVIEWS (2020)

Review Green & Sustainable Science & Technology

Prospects in anode materials for sodium ion batteries - A review

Tahira Perveen et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2020)

Article Chemistry, Physical

An artificial metal-alloy interphase for high-rate and long-life sodium-sulfur batteries

Vipin Kumar et al.

ENERGY STORAGE MATERIALS (2020)

Article Nanoscience & Nanotechnology

MXene-Derived Defect-Rich TiO2@rGO as High-Rate Anodes for Full Na Ion Batteries and Capacitors

Yongzheng Fang et al.

NANO-MICRO LETTERS (2020)

Article Chemistry, Physical

Recent advances and perspectives in stable and dendrite-free potassium metal anodes

Chuanliang Wei et al.

ENERGY STORAGE MATERIALS (2020)

Article Chemistry, Applied

Sodiophilicity/potassiophilicity chemistry in sodium/potassium metal anodes

Xiang Chen et al.

JOURNAL OF ENERGY CHEMISTRY (2020)

Article Multidisciplinary Sciences

Rational design of layered oxide materials for sodium-ion batteries

Chenglong Zhao et al.

SCIENCE (2020)

Review Materials Science, Multidisciplinary

Liquid Metal Composites

Sen Chen et al.

MATTER (2020)

Article Electrochemistry

A Low-Cost Iron-Based Current Collector for Alkaline Battery Electrodes

Ahamed Irshad et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2020)

Review Materials Science, Multidisciplinary

Flexible Na batteries

Chenglong Zhao et al.

INFOMAT (2020)

Article Chemistry, Multidisciplinary

Recent Progress in Rechargeable Sodium-Ion Batteries: toward High-Power Applications

Xiangjun Pu et al.

SMALL (2019)

Review Chemistry, Multidisciplinary

Sodium Metal Anodes: Emerging Solutions to Dendrite Growth

Byeongyong Lee et al.

CHEMICAL REVIEWS (2019)

Article Chemistry, Multidisciplinary

Emergence of Liquid Metals in Nanotechnology

Kourosh Kalantar-Zadeh et al.

ACS NANO (2019)

Article Chemistry, Multidisciplinary

A Sodiophilic Interphase-Mediated, Dendrite-Free Anode with Ultrahigh Specific Capacity for Sodium-Metal Batteries

Lei Ye et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2019)

Review Materials Science, Multidisciplinary

Nanostructured Electrode Materials for Advanced Sodium-Ion Batteries

Yongjin Fang et al.

MATTER (2019)

Review Chemistry, Physical

Alkali-Metal Anodes: From Lab to Market

Jingwei Xiang et al.

JOULE (2019)

Review Chemistry, Physical

Sodium metal anodes for room-temperature sodium-ion batteries: Applications, challenges and solutions

Xueying Zheng et al.

ENERGY STORAGE MATERIALS (2019)

Review Chemistry, Physical

Sodium-based batteries: from critical materials to battery systems

Fang Li et al.

JOURNAL OF MATERIALS CHEMISTRY A (2019)

Review Chemistry, Physical

Sodium and Sodium-Ion Batteries: 50 Years of Research

Claude Delmas

ADVANCED ENERGY MATERIALS (2018)

Article Chemistry, Physical

A room-temperature sodium metal anode enabled by a sodiophilic layer

Shuai Tang et al.

NANO ENERGY (2018)

Article Chemistry, Physical

'Painting' nanostructured metals-playing with liquid metal

Zhenbin Wang et al.

NANOSCALE HORIZONS (2018)

Review Chemistry, Multidisciplinary

Recent developments and insights into the understanding of Na metal anodes for Na-metal batteries

Yang Zhao et al.

ENERGY & ENVIRONMENTAL SCIENCE (2018)

Review Chemistry, Multidisciplinary

Recent progress on sodium ion batteries: potential high-performance anodes

Li Li et al.

ENERGY & ENVIRONMENTAL SCIENCE (2018)

Review Chemistry, Multidisciplinary

Before Li Ion Batteries

Martin Winter et al.

CHEMICAL REVIEWS (2018)

Article Chemistry, Multidisciplinary

Porous Al Current Collector for Dendrite-Free Na Metal Anodes

Shan Liu et al.

NANO LETTERS (2017)

Review Chemistry, Multidisciplinary

Sodium-ion batteries: present and future

Jang-Yeon Hwang et al.

CHEMICAL SOCIETY REVIEWS (2017)

Review Chemistry, Multidisciplinary

Na-Ion Battery Anodes: Materials and Electrochemistry

Wei Luo et al.

ACCOUNTS OF CHEMICAL RESEARCH (2016)

Review Chemistry, Multidisciplinary

Rational material design for ultrafast rechargeable lithium-ion batteries

Yuxin Tang et al.

CHEMICAL SOCIETY REVIEWS (2015)

Article Chemistry, Multidisciplinary

A Highly Reversible Room-Temperature Sodium Metal Anode

Zhi Wei Seh et al.

ACS CENTRAL SCIENCE (2015)

Article Materials Science, Multidisciplinary

Lithium: Sources, Production, Uses, and Recovery Outlook

Laura Talens Peiro et al.

Review Multidisciplinary Sciences

Electrical Energy Storage for the Grid: A Battery of Choices

Bruce Dunn et al.

SCIENCE (2011)

Article Multidisciplinary Sciences

Building better batteries

M. Armand et al.

NATURE (2008)

Article Chemistry, Physical

Novel electrode substrates for rechargeable lithium/polypyrrole batteries

J Wang et al.

JOURNAL OF POWER SOURCES (2005)