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High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires

Introducing amorphous and ultrathin nanosheets of transition bimetal phosphate arrays that are highly active in the oxygen evolution reaction (OER) as shells over an electronically modulated crystalline core with low hydrogen absorption energy for an excellent hydrogen evolution reaction (HER) can b...

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Autores principales: Singh, Thangjam Ibomcha, Maibam, Ashakiran, Cha, Dun Chan, Yoo, Sunghoon, Babarao, Ravichandar, Lee, Sang Uck, Lee, Seunghyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9376825/
https://www.ncbi.nlm.nih.gov/pubmed/35666047
http://dx.doi.org/10.1002/advs.202201311
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author Singh, Thangjam Ibomcha
Maibam, Ashakiran
Cha, Dun Chan
Yoo, Sunghoon
Babarao, Ravichandar
Lee, Sang Uck
Lee, Seunghyun
author_facet Singh, Thangjam Ibomcha
Maibam, Ashakiran
Cha, Dun Chan
Yoo, Sunghoon
Babarao, Ravichandar
Lee, Sang Uck
Lee, Seunghyun
author_sort Singh, Thangjam Ibomcha
collection PubMed
description Introducing amorphous and ultrathin nanosheets of transition bimetal phosphate arrays that are highly active in the oxygen evolution reaction (OER) as shells over an electronically modulated crystalline core with low hydrogen absorption energy for an excellent hydrogen evolution reaction (HER) can boost the sluggish kinetics of the OER and HER in alkaline electrolytes. Therefore, in this study, ultrathin and amorphous cobalt‐nickel‐phosphate (CoNiPO(x)) nanosheet arrays are deposited over vanadium (V)‐doped cobalt‐nitride (V(3%)‐Co(4)N) crystalline core nanowires to obtain amorphous‐shell@crystalline‐core mesoporous 3D‐heterostructures (CoNiPO(x)@V‐Co(4)N/NF) as bifunctional electrocatalysts. The optimized electrocatalyst shows extremely low HER and OER overpotentials of 53 and 270 mV at 10 mA cm(−2), respectively. The CoNiPO(x)@V(3%)‐Co(4)N/NF (+/−) electrolyzer utilizing the electrocatalyst as both anode and cathode demonstrates remarkable overall water‐splitting activity, requiring a cell potential of only 1.52 V at 10 mA cm(−2), 30 mV lower than that of the RuO(2)/NF (+)/20%‐Pt/C/NF (−) electrolyzer. Such impressive bifunctional activities can be attributed to abundant active sites, adjusted electronic structure, lower charge‐transfer resistance, enhanced electrochemically active surface area (ECSA), and surface‐ and volume‐confined electrocatalysis resulting from the synergistic effects of the crystalline V(3%)‐Co(4)N core and amorphous CoNiPO(x) shells boosting water splitting in alkaline media.
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spelling pubmed-93768252022-08-18 High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires Singh, Thangjam Ibomcha Maibam, Ashakiran Cha, Dun Chan Yoo, Sunghoon Babarao, Ravichandar Lee, Sang Uck Lee, Seunghyun Adv Sci (Weinh) Research Articles Introducing amorphous and ultrathin nanosheets of transition bimetal phosphate arrays that are highly active in the oxygen evolution reaction (OER) as shells over an electronically modulated crystalline core with low hydrogen absorption energy for an excellent hydrogen evolution reaction (HER) can boost the sluggish kinetics of the OER and HER in alkaline electrolytes. Therefore, in this study, ultrathin and amorphous cobalt‐nickel‐phosphate (CoNiPO(x)) nanosheet arrays are deposited over vanadium (V)‐doped cobalt‐nitride (V(3%)‐Co(4)N) crystalline core nanowires to obtain amorphous‐shell@crystalline‐core mesoporous 3D‐heterostructures (CoNiPO(x)@V‐Co(4)N/NF) as bifunctional electrocatalysts. The optimized electrocatalyst shows extremely low HER and OER overpotentials of 53 and 270 mV at 10 mA cm(−2), respectively. The CoNiPO(x)@V(3%)‐Co(4)N/NF (+/−) electrolyzer utilizing the electrocatalyst as both anode and cathode demonstrates remarkable overall water‐splitting activity, requiring a cell potential of only 1.52 V at 10 mA cm(−2), 30 mV lower than that of the RuO(2)/NF (+)/20%‐Pt/C/NF (−) electrolyzer. Such impressive bifunctional activities can be attributed to abundant active sites, adjusted electronic structure, lower charge‐transfer resistance, enhanced electrochemically active surface area (ECSA), and surface‐ and volume‐confined electrocatalysis resulting from the synergistic effects of the crystalline V(3%)‐Co(4)N core and amorphous CoNiPO(x) shells boosting water splitting in alkaline media. John Wiley and Sons Inc. 2022-06-06 /pmc/articles/PMC9376825/ /pubmed/35666047 http://dx.doi.org/10.1002/advs.202201311 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Singh, Thangjam Ibomcha
Maibam, Ashakiran
Cha, Dun Chan
Yoo, Sunghoon
Babarao, Ravichandar
Lee, Sang Uck
Lee, Seunghyun
High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title_full High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title_fullStr High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title_full_unstemmed High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title_short High‐Alkaline Water‐Splitting Activity of Mesoporous 3D Heterostructures: An Amorphous‐Shell@Crystalline‐Core Nano‐Assembly of Co‐Ni‐Phosphate Ultrathin‐Nanosheets and V‐ Doped Cobalt‐Nitride Nanowires
title_sort high‐alkaline water‐splitting activity of mesoporous 3d heterostructures: an amorphous‐shell@crystalline‐core nano‐assembly of co‐ni‐phosphate ultrathin‐nanosheets and v‐ doped cobalt‐nitride nanowires
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9376825/
https://www.ncbi.nlm.nih.gov/pubmed/35666047
http://dx.doi.org/10.1002/advs.202201311
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