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Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction

Material interfaces permit electron transfer that modulates the electronic structure and surface properties of catalysts, leading to radically enhanced rates for many important reactions. Unlike conventional thoughts, the nanoscale interfacial interactions have been recently envisioned to be able to...

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Autores principales: Gao, Qiang, Wu, Rui, Liu, Yang, Zheng, Ya-Rong, Li, Yi, Shang, Li-Mei, Ju, Yi-Ming, Gu, Chao, Zheng, Xu-Sheng, Liu, Jian-Wei, Zhu, Jun-Fa, Gao, Min-Rui, Yu, Shu-Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6750066/
https://www.ncbi.nlm.nih.gov/pubmed/31549084
http://dx.doi.org/10.34133/2019/8078549
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author Gao, Qiang
Wu, Rui
Liu, Yang
Zheng, Ya-Rong
Li, Yi
Shang, Li-Mei
Ju, Yi-Ming
Gu, Chao
Zheng, Xu-Sheng
Liu, Jian-Wei
Zhu, Jun-Fa
Gao, Min-Rui
Yu, Shu-Hong
author_facet Gao, Qiang
Wu, Rui
Liu, Yang
Zheng, Ya-Rong
Li, Yi
Shang, Li-Mei
Ju, Yi-Ming
Gu, Chao
Zheng, Xu-Sheng
Liu, Jian-Wei
Zhu, Jun-Fa
Gao, Min-Rui
Yu, Shu-Hong
author_sort Gao, Qiang
collection PubMed
description Material interfaces permit electron transfer that modulates the electronic structure and surface properties of catalysts, leading to radically enhanced rates for many important reactions. Unlike conventional thoughts, the nanoscale interfacial interactions have been recently envisioned to be able to affect the reactivity of catalysts far from the interface. However, demonstration of such unlocalized alterations in existing interfacial materials is rare, impeding the development of new catalysts. We report the observation of unprecedented long-range activation of polydymite Ni(3)S(4) nanorods through the interfacial interaction created by PdS(x) nanodots (dot-on-rod structure) for high-performance water catalytic electroreduction. Experimental results show that this local interaction can activate Ni(3)S(4) rods with length even up to 25 nanometers due to the tailored surface electronic structure. We anticipate that the long-range effect described here may be also applicable to other interfacial material systems, which will aid the development of newly advanced catalysts for modern energy devices.
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spelling pubmed-67500662019-09-23 Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction Gao, Qiang Wu, Rui Liu, Yang Zheng, Ya-Rong Li, Yi Shang, Li-Mei Ju, Yi-Ming Gu, Chao Zheng, Xu-Sheng Liu, Jian-Wei Zhu, Jun-Fa Gao, Min-Rui Yu, Shu-Hong Research (Wash D C) Research Article Material interfaces permit electron transfer that modulates the electronic structure and surface properties of catalysts, leading to radically enhanced rates for many important reactions. Unlike conventional thoughts, the nanoscale interfacial interactions have been recently envisioned to be able to affect the reactivity of catalysts far from the interface. However, demonstration of such unlocalized alterations in existing interfacial materials is rare, impeding the development of new catalysts. We report the observation of unprecedented long-range activation of polydymite Ni(3)S(4) nanorods through the interfacial interaction created by PdS(x) nanodots (dot-on-rod structure) for high-performance water catalytic electroreduction. Experimental results show that this local interaction can activate Ni(3)S(4) rods with length even up to 25 nanometers due to the tailored surface electronic structure. We anticipate that the long-range effect described here may be also applicable to other interfacial material systems, which will aid the development of newly advanced catalysts for modern energy devices. AAAS 2019-08-18 /pmc/articles/PMC6750066/ /pubmed/31549084 http://dx.doi.org/10.34133/2019/8078549 Text en Copyright © 2019 Qiang Gao et al. https://creativecommons.org/licenses/by/4.0/ Exclusive licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Gao, Qiang
Wu, Rui
Liu, Yang
Zheng, Ya-Rong
Li, Yi
Shang, Li-Mei
Ju, Yi-Ming
Gu, Chao
Zheng, Xu-Sheng
Liu, Jian-Wei
Zhu, Jun-Fa
Gao, Min-Rui
Yu, Shu-Hong
Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title_full Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title_fullStr Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title_full_unstemmed Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title_short Synthesis of PdS(x)-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction
title_sort synthesis of pds(x)-mediated polydymite heteronanorods and their long-range activation for enhanced water electroreduction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6750066/
https://www.ncbi.nlm.nih.gov/pubmed/31549084
http://dx.doi.org/10.34133/2019/8078549
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