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NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer

One grand challenge in green hydrogen production is to design efficient HER electrocatalysts for high-rate alkaline water electrolysis. Nickel chalcogenide coatings on nickel foam (NF) are promising HER electrocatalysts, but their high-rate performances are yet to be improved. The current work repor...

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Detalles Bibliográficos
Autores principales: Ma, Xin, Yang, Jingbo, Xu, Xiaoqi, Yang, Hangqi, Peng, Chuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042723/
https://www.ncbi.nlm.nih.gov/pubmed/35494750
http://dx.doi.org/10.1039/d1ra06183f
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author Ma, Xin
Yang, Jingbo
Xu, Xiaoqi
Yang, Hangqi
Peng, Chuang
author_facet Ma, Xin
Yang, Jingbo
Xu, Xiaoqi
Yang, Hangqi
Peng, Chuang
author_sort Ma, Xin
collection PubMed
description One grand challenge in green hydrogen production is to design efficient HER electrocatalysts for high-rate alkaline water electrolysis. Nickel chalcogenide coatings on nickel foam (NF) are promising HER electrocatalysts, but their high-rate performances are yet to be improved. The current work reports a NiSe/Ni(3)Se(2)@NF for alkaline HER, which requires an overpotential of only 336 mV to achieve an ultra-high current density of 1250 mA cm(−2), outperforming commercial Pt/C. The low onset potential of NiSe/Ni(3)Se(2)@NF is attributed to its morphology, and high surface area, as well as multiple active sites and electronic structure modulation because of the heterostructure. While these features are well-known within the current knowledge framework, new understandings are proposed on its superior high-rate performance. The common-anion feature offers abundant interfacial Ni–Se bonding and low resistance for efficient interfacial charge transfer, whereas the heterovalent-Ni-cation in the heterostructure results in a built-in electric field that further enhances the high-rate performance. This work provides new insights on both the mechanistic and methodological aspects of designing high-performance electrocatalysts operating at high current densities.
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spelling pubmed-90427232022-04-28 NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer Ma, Xin Yang, Jingbo Xu, Xiaoqi Yang, Hangqi Peng, Chuang RSC Adv Chemistry One grand challenge in green hydrogen production is to design efficient HER electrocatalysts for high-rate alkaline water electrolysis. Nickel chalcogenide coatings on nickel foam (NF) are promising HER electrocatalysts, but their high-rate performances are yet to be improved. The current work reports a NiSe/Ni(3)Se(2)@NF for alkaline HER, which requires an overpotential of only 336 mV to achieve an ultra-high current density of 1250 mA cm(−2), outperforming commercial Pt/C. The low onset potential of NiSe/Ni(3)Se(2)@NF is attributed to its morphology, and high surface area, as well as multiple active sites and electronic structure modulation because of the heterostructure. While these features are well-known within the current knowledge framework, new understandings are proposed on its superior high-rate performance. The common-anion feature offers abundant interfacial Ni–Se bonding and low resistance for efficient interfacial charge transfer, whereas the heterovalent-Ni-cation in the heterostructure results in a built-in electric field that further enhances the high-rate performance. This work provides new insights on both the mechanistic and methodological aspects of designing high-performance electrocatalysts operating at high current densities. The Royal Society of Chemistry 2021-10-25 /pmc/articles/PMC9042723/ /pubmed/35494750 http://dx.doi.org/10.1039/d1ra06183f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ma, Xin
Yang, Jingbo
Xu, Xiaoqi
Yang, Hangqi
Peng, Chuang
NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title_full NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title_fullStr NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title_full_unstemmed NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title_short NiSe/Ni(3)Se(2) on nickel foam as an ultra-high-rate HER electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
title_sort nise/ni(3)se(2) on nickel foam as an ultra-high-rate her electrocatalyst: common anion heterostructure with built-in electric field and efficient interfacial charge transfer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042723/
https://www.ncbi.nlm.nih.gov/pubmed/35494750
http://dx.doi.org/10.1039/d1ra06183f
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