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OER电催化剂的结构重构及同步辐射研究
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作者 刘崇静 圣蓓蓓 +2 位作者 曹登丰 陈双明 宋礼 《中国科学技术大学学报》 CAS CSCD 北大核心 2021年第11期787-801,共15页
探索高性能电化学析氧反应(OER)催化剂是可再生能源储存和转化的关键.OER过程中的结构重构被认为是高活性催化剂的关键,而追踪OER过程中催化剂的动态变化及识别真正的活性位点则具有挑战性.同步辐射技术能够获得材料中具体元素的局域原... 探索高性能电化学析氧反应(OER)催化剂是可再生能源储存和转化的关键.OER过程中的结构重构被认为是高活性催化剂的关键,而追踪OER过程中催化剂的动态变化及识别真正的活性位点则具有挑战性.同步辐射技术能够获得材料中具体元素的局域原子配位环境和电子结构信息,特别是原位测试允许在工况下监测表面氧化状态和局部原子结构转变,能够促进对反应机理的基本理解.因此,在这篇综述中,我们讨论了重构OER电催化剂的最新进展和未来的机遇,重点综述了OER电催化剂重构的诱因及应用、利用原位同步辐射技术追踪重构OER电催化剂的动态过程以及识别真正的活性位点.最后,我们对重构OER电催化剂的发展和推广中存在的挑战和机遇进行了展望,希望为先进OER电催化剂的合理设计提供指导. 展开更多
关键词 OER 电催化剂 结构重构 同步辐射 原位表征
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Anomalous self-optimization of sulfate ions for boosted oxygen evolution reaction 被引量:1
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作者 Dengfeng Cao Oyawale Adetunji Moses +16 位作者 Beibei Sheng Shuangming Chen Haibin Pan Lihui Wu Hongwei Shou Wenjie Xu Dongdong Li Lirong Zheng Shengqi Chu Chuansheng Hu Daobin Liu Shiqiang Wei Xusheng Zheng Zeming Qi Xiaojun Wu Jing Zhang Li Song 《Science Bulletin》 SCIE EI CSCD 2021年第6期553-561,M0003,共10页
Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as ... Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as inactive sites,dissolution,and oxidation,amongst others.Herein,we applied a model catalyst s-Ni(OH)2 to track the anionic behavior in the catalyst during the electrochemical process to fill this gap.The advanced operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy,synchrotron radiation photoelectron spectroscopy(SRPES)depth detection and differential X-ray absorption fine structure(D-XAFS)spectrum jointly point out that some oxidized sulfur species(SO_(4)^(2-))will selfoptimize new Ni–S bonds during OER process.Such amazing anionic self-optimization(ASO)behavior has never been observed in the OER process.Subsequently,the optimization-derived component shows a significantly improved electrocatalytic performance(activity,stability,etc.)compared to reference catalyst Ni(OH)_(2).Theoretical calculation further suggests that the ASO process indeed derives a thermodynamically stable structure of the OER catalyst,and then gives its superb catalytic performance by optimizing the thermodynamic and kinetic processes in the OER,respectively.This work demonstrates the vital role of anions in the electrochemical process,which will open up new perspectives for understanding OER and provide some new ideas in related fields(especially catalysis and chemistry). 展开更多
关键词 Oxygen evolution reaction(OER) Operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy Synchrotron radiation photoelectron spectroscopy(SRPES)depth detection Differential X-ray absorption fine structure(D-XAFS)spectrum Anionic self-optimization(ASO)
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