化学
锐钛矿
电子转移
吸附
电子
光催化
食腐动物
分子
光化学
化学物理
不稳定性
密度泛函理论
电子密度
计算化学
原子物理学
物理化学
激进的
催化作用
有机化学
量子力学
物理
作者
Yefei Li,Annabella Selloni
摘要
We study the electron transfer from a reduced TiO2 surface to an approaching O2 molecule using periodic hybrid density functional calculations. We find that the formation of an adsorbed superoxo species, *O2(-), via the reaction O2(gas) + e(-) → *O2(-), is barrierless, whereas the transfer of another electron to transform the superoxo into an adsorbed peroxide, i.e. *O2(-) + e(-) → *O2(2-), is nonadiabatic and has a barrier of 0.3 eV. The origin of this nonadiabaticity is attributed to the instability of an intermediate where the second electron is localized at the superoxo adsorption site. These results can explain the experimental finding that O2 is not an efficient electron scavenger in photocatalysis.
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