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      Triboelectric Nanogenerator: Structure, Mechanism, and Applications

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          Flexible triboelectric generator

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            Carbon properties and their role in supercapacitors

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              A review of electrolyte materials and compositions for electrochemical supercapacitors.

              Electrolytes have been identified as some of the most influential components in the performance of electrochemical supercapacitors (ESs), which include: electrical double-layer capacitors, pseudocapacitors and hybrid supercapacitors. This paper reviews recent progress in the research and development of ES electrolytes. The electrolytes are classified into several categories, including: aqueous, organic, ionic liquids, solid-state or quasi-solid-state, as well as redox-active electrolytes. Effects of electrolyte properties on ES performance are discussed in detail. The principles and methods of designing and optimizing electrolytes for ES performance and application are highlighted through a comprehensive analysis of the literature. Interaction among the electrolytes, electro-active materials and inactive components (current collectors, binders, and separators) is discussed. The challenges in producing high-performing electrolytes are analyzed. Several possible research directions to overcome these challenges are proposed for future efforts, with the main aim of improving ESs' energy density without sacrificing existing advantages (e.g., a high power density and a long cycle-life) (507 references).
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                ACS Nano
                ACS Nano
                American Chemical Society (ACS)
                1936-0851
                1936-086X
                January 26 2021
                January 11 2021
                January 26 2021
                : 15
                : 1
                : 258-287
                Affiliations
                [1 ]School of Electrical Engineering, KAIST, Daejeon 34141, Republic of Korea
                Article
                10.1021/acsnano.0c09803
                33427457
                bfd1c7ef-9878-4688-8d83-e3a21e19ce8a
                © 2021
                History

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