化学
催化作用
氨生产
层状结构
原位
氨
锶
纳米结构
钌
氟
透射电子显微镜
空位缺陷
化学工程
工作(物理)
纳米技术
反应中间体
无机化学
协同催化
化学反应
作者
Xiaohu Hu,Yifan Yan,Haolong Chang,Zhongliang Cao,Xuanbei Peng,Jiakai Wang,Xiaorou Cao,Yanru Wang,Haoran Qian,Zhenjie Sun,Yangyu Zhang,Tianhua Zhang,Xi Wang,Xiuyun Wang,Xing Chen,Langli Luo,Lilong Jiang,Jiannian Yao,Yongan Yang
摘要
Abstract The catalytic synthesis of ammonia (NH3) is a cornerstone of the chemical industry. However, to date, direct visualization of the reactant-support interaction and the structural dynamics of catalyst surface/interfaces during efficient NH3 synthesis remain scarce. Herein, this article elucidates the dynamic structural evolution of a previously unreported catalyst Ru/SrF2 by utilizing multiple in situ techniques. The in situ environmental transmission electron microscopy technique not only visualizes the N2/H2 exposure-induced reversible surface rearrangement of SrF2 from (100) to (111) with lamellar nanostructures but also unravels the reaction-driven cyclic reconstruction of the Ru/SrF2 surface-interface under the N2–H2 mixture. The catalytically-active sites are identified mainly as the fluorine vacancy (VF)-centered Ru0-VF-Srγ+ perimeter sites. These sites are abundantly generated due to the recurring surface-interface reconstruction over Ru/SrF2 and underlie the catalyst’s exceptional performance under mild conditions. This work may inspire more advanced operando studies for understanding catalytic mechanisms and developing practical catalysts.
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