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      Recent advances in nanostructured carbon for sodium-ion batteries

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          Abstract

          The review elaborates on diversified nanostructured carbon materials and their modifications from two different perspectives of dimensions and graphitization degree.

          Abstract

          Sodium ion batteries (SIBs) have attracted soaring attention lately as a promising alternative to lithium ion batteries (LIBs), because of the vast availability of sodium, its low price and similar physicochemical properties to lithium. In recent years, significant progress of sodium ion battery anodes, which restricted the development of SIBs in the past decades, has been achieved. Extensive investigations have demonstrated that carbonaceous materials can become the most promising anode candidates for SIBs due to their low cost, high stability and electronic conductivity. In this article, a variety of carbon nanomaterials, including carbon quantum dots (CQDs), carbon nanotubes (CNTs), carbon nanofibers (CNFs), carbon nanosheets, and graphene as well as graphite and amorphous carbon anodes for SIBs, are briefly reviewed in view of their different dimensions and graphitization degrees. It also elaborates on research on carbonaceous material modification by doping with heteroatoms, designing various porous morphologies or compositing with organic or inorganic species. Finally, some perspectives and directions on carbon design for SIBs are also proposed. These comprehensive and in-depth discussions will provide an insight into the optimization of carbonaceous materials in SIB anodes.

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          Most cited references241

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          Research development on sodium-ion batteries.

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            The chemistry of graphene oxide.

            The chemistry of graphene oxide is discussed in this critical review. Particular emphasis is directed toward the synthesis of graphene oxide, as well as its structure. Graphene oxide as a substrate for a variety of chemical transformations, including its reduction to graphene-like materials, is also discussed. This review will be of value to synthetic chemists interested in this emerging field of materials science, as well as those investigating applications of graphene who would find a more thorough treatment of the chemistry of graphene oxide useful in understanding the scope and limitations of current approaches which utilize this material (91 references).
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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

                Contributors
                Journal
                JMCAET
                Journal of Materials Chemistry A
                J. Mater. Chem. A
                Royal Society of Chemistry (RSC)
                2050-7488
                2050-7496
                January 28 2020
                2020
                : 8
                : 4
                : 1604-1630
                Affiliations
                [1 ]Beijing Key Laboratory of Environmental Science and Engineering
                [2 ]School of Material Science & Engineering
                [3 ]Beijing Institute of Technology
                [4 ]Beijing 100081
                [5 ]China
                [6 ]Research Institute of Chemical Defense
                [7 ]Beijing Key Laboratory of Advanced Chemical Energy Storage Technology and Materials
                [8 ]Beijing 100191
                [9 ]State Key Laboratory of Rare Earth Resource Utilization
                [10 ]Changchun Institute of Applied Chemistry
                [11 ]Chinese Academy of Sciences
                Article
                10.1039/C9TA09984K
                ad323bdb-ec16-4f8d-8e22-f5e1efeba9eb
                © 2020

                http://rsc.li/journals-terms-of-use

                History

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