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Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts

Agglomeration-triggered deactivation of supported platinum electrocatalysts markedly hinders their application in methanol oxidation reaction (MOR). In this study, graphene-supported nickel–iron layered double hydroxide (NiFe-LDH/rGO), in which Fe(3+) was introduced to replace Ni(2+) partially in th...

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Autores principales: Han, Yechuang, Li, Pengfei, Liu, Jun, Wu, Shouliang, Ye, Yixing, Tian, Zhenfei, Liang, Changhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5778055/
https://www.ncbi.nlm.nih.gov/pubmed/29358720
http://dx.doi.org/10.1038/s41598-018-19876-z
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author Han, Yechuang
Li, Pengfei
Liu, Jun
Wu, Shouliang
Ye, Yixing
Tian, Zhenfei
Liang, Changhao
author_facet Han, Yechuang
Li, Pengfei
Liu, Jun
Wu, Shouliang
Ye, Yixing
Tian, Zhenfei
Liang, Changhao
author_sort Han, Yechuang
collection PubMed
description Agglomeration-triggered deactivation of supported platinum electrocatalysts markedly hinders their application in methanol oxidation reaction (MOR). In this study, graphene-supported nickel–iron layered double hydroxide (NiFe-LDH/rGO), in which Fe(3+) was introduced to replace Ni(2+) partially in the Ni(OH)(2) lattice to provide stronger metal–support bonding sites, was utilized to immobilize Pt nanoparticles (NPs). Given the optimized metal–support interfacial contact (Fe(3+)-O(H)-Pt) between Pt NPs and NiFe-LDH/rGO nanosheets for Pt/NiFe-LDH/rGO electrocatalysts, the Pt/NiFe-LDH/rGO electrocatalysts displayed dramatically enhanced durability than that of Pt/Ni(OH)(2)/rGO counterpart as well as commercial Pt/C, and 86.5% of its initial catalytic activity can be maintained even after 1200 cycles of cyclic voltammetry (CV) tests during MOR. First-principle calculations toward the resultant M-O(H)-Pt (M = Fe(3+), Ni(2+)) interfacial structure further corroborates that the NiFe-LDH nanosheets can provide stronger bonding sites (via the Fe(3+)-O(H)-Pt bonds) to immobilize Pt NPs than those of Ni(OH)(2) nanosheets (via the Ni(2+)-O(H)-Pt bonds).
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spelling pubmed-57780552018-01-31 Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts Han, Yechuang Li, Pengfei Liu, Jun Wu, Shouliang Ye, Yixing Tian, Zhenfei Liang, Changhao Sci Rep Article Agglomeration-triggered deactivation of supported platinum electrocatalysts markedly hinders their application in methanol oxidation reaction (MOR). In this study, graphene-supported nickel–iron layered double hydroxide (NiFe-LDH/rGO), in which Fe(3+) was introduced to replace Ni(2+) partially in the Ni(OH)(2) lattice to provide stronger metal–support bonding sites, was utilized to immobilize Pt nanoparticles (NPs). Given the optimized metal–support interfacial contact (Fe(3+)-O(H)-Pt) between Pt NPs and NiFe-LDH/rGO nanosheets for Pt/NiFe-LDH/rGO electrocatalysts, the Pt/NiFe-LDH/rGO electrocatalysts displayed dramatically enhanced durability than that of Pt/Ni(OH)(2)/rGO counterpart as well as commercial Pt/C, and 86.5% of its initial catalytic activity can be maintained even after 1200 cycles of cyclic voltammetry (CV) tests during MOR. First-principle calculations toward the resultant M-O(H)-Pt (M = Fe(3+), Ni(2+)) interfacial structure further corroborates that the NiFe-LDH nanosheets can provide stronger bonding sites (via the Fe(3+)-O(H)-Pt bonds) to immobilize Pt NPs than those of Ni(OH)(2) nanosheets (via the Ni(2+)-O(H)-Pt bonds). Nature Publishing Group UK 2018-01-22 /pmc/articles/PMC5778055/ /pubmed/29358720 http://dx.doi.org/10.1038/s41598-018-19876-z Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Han, Yechuang
Li, Pengfei
Liu, Jun
Wu, Shouliang
Ye, Yixing
Tian, Zhenfei
Liang, Changhao
Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title_full Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title_fullStr Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title_full_unstemmed Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title_short Strong Fe(3+)-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts
title_sort strong fe(3+)-o(h)-pt interfacial interaction induced excellent stability of pt/nife-ldh/rgo electrocatalysts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5778055/
https://www.ncbi.nlm.nih.gov/pubmed/29358720
http://dx.doi.org/10.1038/s41598-018-19876-z
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