Cargando…

Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon

Water splitting for production of hydrogen as a clean energy alternative to fossil fuel has received much attention, but it is still a tough challenge to synthesize electrocatalysts with controllable bonding and charge distribution. In this work, ultrafine S‐doped RuP nanoparticles homogeneously emb...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Xiaoyu, Liu, Fan, Yu, Jiayuan, Xiong, Guowei, Zhao, Lili, Sang, Yuanhua, Zuo, Shouwei, Zhang, Jing, Liu, Hong, Zhou, Weijia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507474/
https://www.ncbi.nlm.nih.gov/pubmed/32995134
http://dx.doi.org/10.1002/advs.202001526
_version_ 1783585234543968256
author Liu, Xiaoyu
Liu, Fan
Yu, Jiayuan
Xiong, Guowei
Zhao, Lili
Sang, Yuanhua
Zuo, Shouwei
Zhang, Jing
Liu, Hong
Zhou, Weijia
author_facet Liu, Xiaoyu
Liu, Fan
Yu, Jiayuan
Xiong, Guowei
Zhao, Lili
Sang, Yuanhua
Zuo, Shouwei
Zhang, Jing
Liu, Hong
Zhou, Weijia
author_sort Liu, Xiaoyu
collection PubMed
description Water splitting for production of hydrogen as a clean energy alternative to fossil fuel has received much attention, but it is still a tough challenge to synthesize electrocatalysts with controllable bonding and charge distribution. In this work, ultrafine S‐doped RuP nanoparticles homogeneously embedded in a N, P, and S‐codoped carbon sheet (S‐RuP@NPSC) is synthesized by pyrolysis of poly(cyclotriphosphazene‐co‐4,4′‐sulfonyldiphenol) (PZS) as the source of C/N/S/P. The bondings between Ru and N, P, S in PZS are regulated to synthesize RuS(2) (800 °C) and S‐RuP (900 °C) by different calcination temperatures. The S‐RuP@NPSC with low Ru loading of 0.8 wt% with abundant active catalytic sites possesses high utilization of Ru, the mass catalytic activity is 22.88 times than 20 wt% Pt/C with the overpotential of 250 mV. Density functional theory calculation confirms that the surface Ru (−0.18 eV) and P (0.05 eV) are catalytic active sites for the hydrogen evolution reaction (HER), and the according charge redistribution of Ru is regulated by S and P with reverse electronegativity and electron–donor property to induce a synergistically enhanced reactivity toward the HER. This work provides a rational method to regulate the bonding and charge distribution of Ru‐based electrocatalysts by reacting macromolecules with multielement of C/N/S/P with Ru.
format Online
Article
Text
id pubmed-7507474
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75074742020-09-28 Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon Liu, Xiaoyu Liu, Fan Yu, Jiayuan Xiong, Guowei Zhao, Lili Sang, Yuanhua Zuo, Shouwei Zhang, Jing Liu, Hong Zhou, Weijia Adv Sci (Weinh) Full Papers Water splitting for production of hydrogen as a clean energy alternative to fossil fuel has received much attention, but it is still a tough challenge to synthesize electrocatalysts with controllable bonding and charge distribution. In this work, ultrafine S‐doped RuP nanoparticles homogeneously embedded in a N, P, and S‐codoped carbon sheet (S‐RuP@NPSC) is synthesized by pyrolysis of poly(cyclotriphosphazene‐co‐4,4′‐sulfonyldiphenol) (PZS) as the source of C/N/S/P. The bondings between Ru and N, P, S in PZS are regulated to synthesize RuS(2) (800 °C) and S‐RuP (900 °C) by different calcination temperatures. The S‐RuP@NPSC with low Ru loading of 0.8 wt% with abundant active catalytic sites possesses high utilization of Ru, the mass catalytic activity is 22.88 times than 20 wt% Pt/C with the overpotential of 250 mV. Density functional theory calculation confirms that the surface Ru (−0.18 eV) and P (0.05 eV) are catalytic active sites for the hydrogen evolution reaction (HER), and the according charge redistribution of Ru is regulated by S and P with reverse electronegativity and electron–donor property to induce a synergistically enhanced reactivity toward the HER. This work provides a rational method to regulate the bonding and charge distribution of Ru‐based electrocatalysts by reacting macromolecules with multielement of C/N/S/P with Ru. John Wiley and Sons Inc. 2020-07-20 /pmc/articles/PMC7507474/ /pubmed/32995134 http://dx.doi.org/10.1002/advs.202001526 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Liu, Xiaoyu
Liu, Fan
Yu, Jiayuan
Xiong, Guowei
Zhao, Lili
Sang, Yuanhua
Zuo, Shouwei
Zhang, Jing
Liu, Hong
Zhou, Weijia
Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title_full Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title_fullStr Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title_full_unstemmed Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title_short Charge Redistribution Caused by S,P Synergistically Active Ru Endows an Ultrahigh Hydrogen Evolution Activity of S‐Doped RuP Embedded in N,P,S‐Doped Carbon
title_sort charge redistribution caused by s,p synergistically active ru endows an ultrahigh hydrogen evolution activity of s‐doped rup embedded in n,p,s‐doped carbon
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507474/
https://www.ncbi.nlm.nih.gov/pubmed/32995134
http://dx.doi.org/10.1002/advs.202001526
work_keys_str_mv AT liuxiaoyu chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT liufan chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT yujiayuan chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT xiongguowei chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT zhaolili chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT sangyuanhua chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT zuoshouwei chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT zhangjing chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT liuhong chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon
AT zhouweijia chargeredistributioncausedbyspsynergisticallyactiveruendowsanultrahighhydrogenevolutionactivityofsdopedrupembeddedinnpsdopedcarbon