2016
DOI: 10.1039/c6cc05357b
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2D materials for renewable energy storage devices: Outlook and challenges

Abstract: Scientists are looking for cost-effective, clean and durable alternative energy devices. Superior charge storage devices can easily meet the demands of our daily needs. In this respect, a material with suitable dimensions for charge storage devices has been considered to be very important. Improved performance of charge storage devices has been derived from whole-body participation and the best are from 2D materials, which provide a viable and acceptable solution.

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Cited by 102 publications
(60 citation statements)
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“…Mater. Interfaces 2019, 6,1802004 [202] www.advmatinterfaces.de surprisingly, MXene/metal oxides composites [64,165,166,171,176,184] and MXene/conductive polymers composites have been used as the electrode materials of supercapacitors. [202,212] In MXene/metal oxides composites the impressed voltage can cause oxidation-reduction reactions to occur, not only in the M n+1 X n T x but the metal oxides can also contribute to the total capacity.…”
Section: Mxene/metal Oxide-based Supercapacitor Electrodesmentioning
confidence: 99%
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“…Mater. Interfaces 2019, 6,1802004 [202] www.advmatinterfaces.de surprisingly, MXene/metal oxides composites [64,165,166,171,176,184] and MXene/conductive polymers composites have been used as the electrode materials of supercapacitors. [202,212] In MXene/metal oxides composites the impressed voltage can cause oxidation-reduction reactions to occur, not only in the M n+1 X n T x but the metal oxides can also contribute to the total capacity.…”
Section: Mxene/metal Oxide-based Supercapacitor Electrodesmentioning
confidence: 99%
“…[1][2][3] 2D materials exhibit outstanding electronic, [4][5][6] mechanical, [7,8] and optical properties. [1][2][3] 2D materials exhibit outstanding electronic, [4][5][6] mechanical, [7,8] and optical properties.…”
Section: Introductionmentioning
confidence: 99%
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“…In recent years, transition metal dichalcogenides compound attracts a greater importance due to its tunable magnetic, optical, electrical, physical, chemical and mechanical properties. Thus these materials gives rise to wider applications like energy storage devices [2], catalysis [3], Li-ion batteries [4] and touch sensing devices [5] and information storing devices [6]. Based on these facts, literature survey was made and to our knowledge there is only limited reports on studying the electronic properties of functionalized and impurity substituted VS2 nanostructures.…”
Section: Indroductionmentioning
confidence: 99%
“…The ongoing energy transition to a more sustainable and low‐carbon future pushes the development of advanced materials for energy and catalysis . 2D or layered materials are interesting in this regard for their peculiar transient properties (excitons, free carriers, plasmons, polarons, etc.).…”
Section: Introductionmentioning
confidence: 99%