塔菲尔方程
催化作用
铂金
循环伏安法
材料科学
X射线光电子能谱
电化学
过渡金属
化学工程
化学
物理化学
电极
有机化学
工程类
作者
Jiali Wang,Hui‐Ying Tan,Tsung‐Rong Kuo,Sheng‐Chih Lin,Chia‐Shuo Hsu,Yanping Zhu,You‐Chiuan Chu,Tai Lung Chen,Jyh‐Fu Lee,Hao Ming Chen
出处
期刊:Small
[Wiley]
日期:2021-02-03
卷期号:17 (16)
被引量:58
标识
DOI:10.1002/smll.202005713
摘要
Abstract Single‐atom catalysts (SAs) with the maximum atom utilization and breakthrough activities toward hydrogen evolution reaction (HER) have attracted considerable research interests. Uncovering the nature of single‐atom metal centers under operating electrochemical condition is highly significant for improving their catalytic performance, yet is poorly understood in most studies. Herein, Pt single atoms anchoring on the nitrogen–carbon substrate (Pt SA /N–C) as a model system are utilized to investigate the dynamic structure of Pt single‐atom centers during the HER process. Via in situ/operando synchrotron X‐ray absorption spectroscopy and X‐ray photoelectron spectroscopy, an intriguing structural reconstruction at atomic level is identified in the Pt SA /N–C when it is subjected to the repetitive linear sweep voltammetry and cyclic voltammetry scanning. It demonstrates that the PtN bonding tends to be weakened under cathodic potentials, which induces some Pt single atoms to dynamically aggregate into forming small clusters during the HER reaction. More importantly, experimental evidence and/or indicator is offered to correlate the observed Tafel slope with the dynamic structure of Pt catalysts. This work provides an evident understanding of SAs under electrocatalytic process and offers informative insights into constructing efficient catalysts at atomic level for electrochemical water‐splitting system.
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