化学
原位
生化工程
催化作用
经济短缺
反应机理
机制(生物学)
反应中间体
还原(数学)
纳米技术
表征(材料科学)
工艺工程
过程(计算)
透视图(图形)
计算机科学
有机化学
材料科学
工程类
人工智能
哲学
操作系统
认识论
语言学
数学
政府(语言学)
几何学
作者
Xiaodong Li,Shumin Wang,Li Li,Yongfu Sun,Yi Xie
摘要
CO2 conversion to chemical fuels through photoreduction, electroreduction, or thermoreduction is considered as one of the most effective methods to solve environmental pollution and energy shortage problems. However, recent studies show that the involved catalysts may undergo continuous reconstruction under realistic working conditions, which unfortunately causes controversial results concerning the active sites and reaction mechanism of CO2 reduction. Thus, it is necessary, while challenging, to monitor in real time the dynamic evolution of the catalysts and reaction intermediates by in situ techniques under experimental conditions. In this Perspective, we start with the working principle and detection modes of various in situ characterization techniques. Subsequently, we systematically summarize the recent developments of in situ studies on probing the catalyst evolution during the CO2 reduction process. We further focus on the progress of in situ studies in monitoring the reaction intermediates and catalytic products, in which we also highlight how the theoretical calculations are combined to reveal the reaction mechanism in detail. Finally, based on the achievements in the representative studies, we present some prospects and suggestions for in situ studies of CO2 reduction in the future.
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