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      Emerging 2D MXenes for supercapacitors: status, challenges and prospects

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          Abstract

          This review provides a comprehensive understanding of the emerging 2D MXene electrode materials for supercapacitor application.

          Abstract

          MXenes refer to a family of 2D transition metal carbides/nitrides that are rich in chemistry. The first member of the family, Ti 3C 2T x, was reported in 2011. Since then MXenes have opened up an exciting new field in 2D inorganic functional materials by virtue of their intrinsic electronic conductivity, superior hydrophilicity, rich surface chemistry and layered structure, as evidenced by the fact that the number of papers on MXenes has increased exponentially. The unique properties and ease of processing have positioned them as promising materials for a variety of applications including energy storage, especially for supercapacitors. In this review, we aim to summarize the current advances in MXene research on supercapacitors. We begin by reviewing various fabrication routes and their influence on the structure and surface chemistry of MXenes. The structure, properties, stability, and species of layered MXenes are then introduced. The focus then turns to the capacitive energy-storage mechanisms and the factors determining the electrochemical behavior and performance in supercapacitors. Besides, various types of MXene-based supercapacitors are summarized to highlight the significance of MXenes in constructing energy storage devices. Finally, challenges and prospects in this booming field are proposed to promote further development of MXenes in supercapacitors.

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          Two-dimensional nanocrystals produced by exfoliation of Ti3 AlC2.

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            Opportunities and challenges for a sustainable energy future.

            Access to clean, affordable and reliable energy has been a cornerstone of the world's increasing prosperity and economic growth since the beginning of the industrial revolution. Our use of energy in the twenty-first century must also be sustainable. Solar and water-based energy generation, and engineering of microbes to produce biofuels are a few examples of the alternatives. This Perspective puts these opportunities into a larger context by relating them to a number of aspects in the transportation and electricity generation sectors. It also provides a snapshot of the current energy landscape and discusses several research and development opportunities and pathways that could lead to a prosperous, sustainable and secure energy future for the world.
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              2D metal carbides and nitrides (MXenes) for energy storage

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                Author and article information

                Contributors
                Journal
                CSRVBR
                Chemical Society Reviews
                Chem. Soc. Rev.
                Royal Society of Chemistry (RSC)
                0306-0012
                1460-4744
                September 21 2020
                2020
                : 49
                : 18
                : 6666-6693
                Affiliations
                [1 ]Shenyang National Laboratory for Materials Science
                [2 ]Institute of Metal Research
                [3 ]Chinese Academy of Sciences
                [4 ]Shenyang
                [5 ]China
                [6 ]Energy Geoscience Division Lawrence Berkeley National Laboratory
                [7 ]USA
                [8 ]Institute for Materials Science and Devices
                [9 ]Suzhou University of Science and Technology
                [10 ]Suzhou
                [11 ]School of Materials Science and Engineering
                [12 ]Zhengzhou University
                [13 ]Zhengzhou, 450001
                [14 ]Qingdao University of Science and Technology
                [15 ]Qingdao
                Article
                10.1039/D0CS00175A
                32781463
                64899e3d-89b7-4a6c-a303-0415a0f10dd7
                © 2020

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

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