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Visualizing Redox Dynamics of a Single Ag/AgCl Heterogeneous Nanocatalyst at Atomic Resolution

机译:以原子分辨率可视化单个Ag / AgCl非均相纳米催化剂的氧化还原动力学

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Operando characterization of gas solid reactions at the atomic scale is of great importance for determining the mechanism of catalysis. This is especially true in the study of heterostructures because of structural correlation between the different parts. However, such experiments are challenging and have rarely been accomplished. In this work, atomic scale redox dynamics of Ag/AgCl heterostructures have been studied using in situ environmental transmission electron microscopy (ETEM) in combination with density function theory (DFT) calculations. The reduction of Ag/AgCl to Ag is likely a result of the formation of Cl vacancies while Ag+ ions accept electrons. The oxidation process of Ag/AgCl has been observed: rather than direct replacement of Cl by O, the Ag/AgCl nanocatalyst was first reduced to Ag, and then Ag was oxidized to different phases of silver oxide under different O-2 partial pressures. Ag2O formed at low O-2 partial pressure, whereas AgO formed at atmospheric pressure. By combining in situ ETEM observation and DFT calculations, this structural evolution is characterized in a distinct nanoscale environment.
机译:在原子尺度上气固反应的操作表征对于确定催化机理非常重要。由于不同部分之间的结构相关性,在异质结构研究中尤其如此。但是,这样的实验具有挑战性,并且很少完成。在这项工作中,使用原位环境透射电子显微镜(ETEM)结合密度泛函理论(DFT)计算研究了Ag / AgCl异质结构的原子尺度氧化还原动力学。 Ag / AgCl还原为Ag可能是由于Cl空位形成的结果,而Ag +离子接受电子。已经观察到Ag / AgCl的氧化过程:首先将Ag / AgCl纳米催化剂还原为Ag,而不是用O直接取代Cl,然后在不同的O-2分压下将Ag氧化为氧化银的不同相。 Ag2O在低O-2分压下形成,而AgO在大气压下形成。通过结合原位ETEM观察和DFT计算,在独特的纳米级环境中表征了这种结构演变。

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