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      A review of rechargeable batteries for portable electronic devices

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          Toward Safe Lithium Metal Anode in Rechargeable Batteries: A Review.

          The lithium metal battery is strongly considered to be one of the most promising candidates for high-energy-density energy storage devices in our modern and technology-based society. However, uncontrollable lithium dendrite growth induces poor cycling efficiency and severe safety concerns, dragging lithium metal batteries out of practical applications. This review presents a comprehensive overview of the lithium metal anode and its dendritic lithium growth. First, the working principles and technical challenges of a lithium metal anode are underscored. Specific attention is paid to the mechanistic understandings and quantitative models for solid electrolyte interphase (SEI) formation, lithium dendrite nucleation, and growth. On the basis of previous theoretical understanding and analysis, recently proposed strategies to suppress dendrite growth of lithium metal anode and some other metal anodes are reviewed. A section dedicated to the potential of full-cell lithium metal batteries for practical applications is included. A general conclusion and a perspective on the current limitations and recommended future research directions of lithium metal batteries are presented. The review concludes with an attempt at summarizing the theoretical and experimental achievements in lithium metal anodes and endeavors to realize the practical applications of lithium metal batteries.
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            Research development on sodium-ion batteries.

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              Na-ion batteries, recent advances and present challenges to become low cost energy storage systems

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                Author and article information

                Journal
                InfoMat
                InfoMat
                Wiley
                2567-3165
                2567-3165
                March 28 2019
                March 2019
                March 28 2019
                March 2019
                : 1
                : 1
                : 6-32
                Affiliations
                [1 ]Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical EngineeringTsinghua University Beijing China
                [2 ]College of Materials and EnergySouth China Agricultural University Guangzhou China
                [3 ]School of Chemical and Biomolecular EngineeringThe University of Sydney Sydney New South Wales Australia
                [4 ]Advanced Research Institute of Multidisciplinary ScienceBeijing Institute of Technology Beijing China
                [5 ]Key Laboratory for Polymeric Composite and Functional Materials, Ministry of Education, School of ChemistrySun Yat‐sen University Guangzhou China
                [6 ]School of Engineering and Materials ScienceQueen Mary University of London London United Kingdom
                [7 ]Department of Materials Science and EngineeringNational Tsing Hua University Hsinchu Taiwan, ROC
                [8 ]College of Materials Science and Engineering, Key Laboratory of Advanced Functional Materials, Ministry of EducationBeijing University of Technology Beijing China
                Article
                10.1002/inf2.12000
                24dac9d3-c12d-4dbb-bfb4-946ec4e69465
                © 2019

                http://creativecommons.org/licenses/by/4.0/

                http://creativecommons.org/licenses/by/4.0/

                http://doi.wiley.com/10.1002/tdm_license_1.1

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