氧气
催化作用
化学
吸附
分子
燃烧
丙烷
极限氧浓度
催化燃烧
无机化学
光化学
化学工程
物理化学
有机化学
工程类
作者
Huayu Gu,Jintong Lan,Hong Hu,Falong Jia,Zhihui Ai,Lizhi Zhang,Xiao Liu
标识
DOI:10.1016/j.jhazmat.2023.132499
摘要
Oxygen vacancies (OV), as the sites of molecular oxygen adsorption and activation, play an important role in the catalytic combustion process of volatile organic compounds (VOCs). Revealing the relationship between OV concentration and molecular oxygen activation behavior is of significance to construct the efficient catalysts. Herein, α-MnO2 with different OV concentrations was prepared to investigate the molecular oxygen activation for C3H8 combustion. It is disclosed that the enhanced OV concentration in α-MnO2 induced the reconfiguration of surface metal atoms, resulting in the transformation of oxygen activation configuration from end-on mode to side-on mode. Oxygen molecules in side-on mode possessed more localized electron density and weaker coordination bond strength with surrounding Mn atoms, which were more favorable to adsorb C3H8 molecules and activate C-H bond for the improved combustion performance. This work provides a new understanding to reveal that the increased OV concentration contributes to more efficient VOCs combustion.
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