Cargando…

Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution

Metallic nanostructures are commonly densely packed into a few packing variants with slightly different atomic packing factors. The structural aspects and physicochemical properties related with the vacancies in such nanostructures are rarely explored because of lack of an effective way to control t...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Zhicheng, Liu, Guigao, Cui, Xiaoya, Gong, Yue, Yi, Ding, Zhang, Qinghua, Zhu, Chongzhi, Saleem, Faisal, Chen, Bo, Lai, Zhuangchai, Yun, Qinbai, Cheng, Hongfei, Huang, Zhiqi, Peng, Yongwu, Fan, Zhanxi, Li, Bing, Dai, Wenrui, Chen, Wei, Du, Yonghua, Ma, Lu, Sun, Cheng-Jun, Hwang, Inhui, Chen, Shuangming, Song, Li, Ding, Feng, Gu, Lin, Zhu, Yihan, Zhang, Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7990340/
https://www.ncbi.nlm.nih.gov/pubmed/33762332
http://dx.doi.org/10.1126/sciadv.abd6647
_version_ 1783669053731110912
author Zhang, Zhicheng
Liu, Guigao
Cui, Xiaoya
Gong, Yue
Yi, Ding
Zhang, Qinghua
Zhu, Chongzhi
Saleem, Faisal
Chen, Bo
Lai, Zhuangchai
Yun, Qinbai
Cheng, Hongfei
Huang, Zhiqi
Peng, Yongwu
Fan, Zhanxi
Li, Bing
Dai, Wenrui
Chen, Wei
Du, Yonghua
Ma, Lu
Sun, Cheng-Jun
Hwang, Inhui
Chen, Shuangming
Song, Li
Ding, Feng
Gu, Lin
Zhu, Yihan
Zhang, Hua
author_facet Zhang, Zhicheng
Liu, Guigao
Cui, Xiaoya
Gong, Yue
Yi, Ding
Zhang, Qinghua
Zhu, Chongzhi
Saleem, Faisal
Chen, Bo
Lai, Zhuangchai
Yun, Qinbai
Cheng, Hongfei
Huang, Zhiqi
Peng, Yongwu
Fan, Zhanxi
Li, Bing
Dai, Wenrui
Chen, Wei
Du, Yonghua
Ma, Lu
Sun, Cheng-Jun
Hwang, Inhui
Chen, Shuangming
Song, Li
Ding, Feng
Gu, Lin
Zhu, Yihan
Zhang, Hua
author_sort Zhang, Zhicheng
collection PubMed
description Metallic nanostructures are commonly densely packed into a few packing variants with slightly different atomic packing factors. The structural aspects and physicochemical properties related with the vacancies in such nanostructures are rarely explored because of lack of an effective way to control the introduction of vacancy sites. Highly voided metallic nanostructures with ordered vacancies are however energetically high lying and very difficult to synthesize. Here, we report a chemical method for synthesis of hierarchical Rh nanostructures (Rh NSs) composed of ultrathin nanosheets, composed of hexagonal close-packed structure embedded with nanodomains that adopt a vacated Barlow packing with ordered vacancies. The obtained Rh NSs exhibit remarkably enhanced electrocatalytic activity and stability toward the hydrogen evolution reaction (HER) in alkaline media. Theoretical calculations reveal that the exceptional electrocatalytic performance of Rh NSs originates from their unique vacancy structures, which facilitate the adsorption and dissociation of H(2)O in the HER.
format Online
Article
Text
id pubmed-7990340
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Association for the Advancement of Science
record_format MEDLINE/PubMed
spelling pubmed-79903402021-04-02 Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution Zhang, Zhicheng Liu, Guigao Cui, Xiaoya Gong, Yue Yi, Ding Zhang, Qinghua Zhu, Chongzhi Saleem, Faisal Chen, Bo Lai, Zhuangchai Yun, Qinbai Cheng, Hongfei Huang, Zhiqi Peng, Yongwu Fan, Zhanxi Li, Bing Dai, Wenrui Chen, Wei Du, Yonghua Ma, Lu Sun, Cheng-Jun Hwang, Inhui Chen, Shuangming Song, Li Ding, Feng Gu, Lin Zhu, Yihan Zhang, Hua Sci Adv Research Articles Metallic nanostructures are commonly densely packed into a few packing variants with slightly different atomic packing factors. The structural aspects and physicochemical properties related with the vacancies in such nanostructures are rarely explored because of lack of an effective way to control the introduction of vacancy sites. Highly voided metallic nanostructures with ordered vacancies are however energetically high lying and very difficult to synthesize. Here, we report a chemical method for synthesis of hierarchical Rh nanostructures (Rh NSs) composed of ultrathin nanosheets, composed of hexagonal close-packed structure embedded with nanodomains that adopt a vacated Barlow packing with ordered vacancies. The obtained Rh NSs exhibit remarkably enhanced electrocatalytic activity and stability toward the hydrogen evolution reaction (HER) in alkaline media. Theoretical calculations reveal that the exceptional electrocatalytic performance of Rh NSs originates from their unique vacancy structures, which facilitate the adsorption and dissociation of H(2)O in the HER. American Association for the Advancement of Science 2021-03-24 /pmc/articles/PMC7990340/ /pubmed/33762332 http://dx.doi.org/10.1126/sciadv.abd6647 Text en Copyright © 2021 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/ https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Zhang, Zhicheng
Liu, Guigao
Cui, Xiaoya
Gong, Yue
Yi, Ding
Zhang, Qinghua
Zhu, Chongzhi
Saleem, Faisal
Chen, Bo
Lai, Zhuangchai
Yun, Qinbai
Cheng, Hongfei
Huang, Zhiqi
Peng, Yongwu
Fan, Zhanxi
Li, Bing
Dai, Wenrui
Chen, Wei
Du, Yonghua
Ma, Lu
Sun, Cheng-Jun
Hwang, Inhui
Chen, Shuangming
Song, Li
Ding, Feng
Gu, Lin
Zhu, Yihan
Zhang, Hua
Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title_full Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title_fullStr Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title_full_unstemmed Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title_short Evoking ordered vacancies in metallic nanostructures toward a vacated Barlow packing for high-performance hydrogen evolution
title_sort evoking ordered vacancies in metallic nanostructures toward a vacated barlow packing for high-performance hydrogen evolution
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7990340/
https://www.ncbi.nlm.nih.gov/pubmed/33762332
http://dx.doi.org/10.1126/sciadv.abd6647
work_keys_str_mv AT zhangzhicheng evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT liuguigao evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT cuixiaoya evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT gongyue evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT yiding evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT zhangqinghua evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT zhuchongzhi evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT saleemfaisal evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT chenbo evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT laizhuangchai evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT yunqinbai evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT chenghongfei evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT huangzhiqi evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT pengyongwu evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT fanzhanxi evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT libing evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT daiwenrui evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT chenwei evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT duyonghua evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT malu evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT sunchengjun evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT hwanginhui evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT chenshuangming evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT songli evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT dingfeng evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT gulin evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT zhuyihan evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution
AT zhanghua evokingorderedvacanciesinmetallicnanostructurestowardavacatedbarlowpackingforhighperformancehydrogenevolution