2020
DOI: 10.3389/fmats.2020.00105
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WO3-Based Materials as Electrocatalysts for Hydrogen Evolution Reaction

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Cited by 48 publications
(24 citation statements)
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“…With growing demands for renewable energy utilization and environment protection in a developing modern society, significant efforts have been devoted to exploiting electric energy conversion and storage devices to maximize the utilization of intermittent renewable solar and wind energy [1][2][3][4][5][6]. Among these electrical energy storage devices, lithium-ion batteries (LIBs), with high energy density, long cycle life, and environmentally benign profile, have been widely applied in portable electronics, electrical vehicles, and smart grids [7][8][9][10][11][12][13].…”
Section: Introductionmentioning
confidence: 99%
“…With growing demands for renewable energy utilization and environment protection in a developing modern society, significant efforts have been devoted to exploiting electric energy conversion and storage devices to maximize the utilization of intermittent renewable solar and wind energy [1][2][3][4][5][6]. Among these electrical energy storage devices, lithium-ion batteries (LIBs), with high energy density, long cycle life, and environmentally benign profile, have been widely applied in portable electronics, electrical vehicles, and smart grids [7][8][9][10][11][12][13].…”
Section: Introductionmentioning
confidence: 99%
“…28 WO 3 has also been extensively studied as an electrocatalyst for the hydrogen evolution reaction (HER). 29 For use in sensors, WO 3 is an n-type material that readily chemisorbs various gases, 30 creating a charge depletion region and subsequent resistivity change. Similar to the case with photocatalysis, modication of WO 3 morphology 31 or chemical composition 32 can alter its properties for enhancement of gas sensing performance.…”
Section: Introductionmentioning
confidence: 99%
“…Nowadays, electric energy storage technology and equipment are gradually becoming a critical issue with the development of society (Wang F. et al, 2018;Wang R. et al, 2020;Liu et al, 2019a,b;Wu et al, 2019a;Zhao et al, 2020;Li et al, 2020f;Ma et al, 2020b;Pan K. et al, 2020). In recent years, various electrochemical energy storage systems have been extensively studied (Ma et al, 2013(Ma et al, , 2017(Ma et al, , 2019Luo et al, 2017;Chen H. et al, 2018;Guo et al, 2019Guo et al, , 2020Liu et al, 2019cYu et al, 2020;Zou P. et al, 2020).…”
Section: Introductionmentioning
confidence: 99%