光催化
催化作用
羟基自由基
吸附
化学
电子转移
光化学
再分配(选举)
质子
氢
接受者
激进的
质子耦合电子转移
有机化学
物理
政治
法学
量子力学
凝聚态物理
政治学
作者
Xiaoyu Liang,Yulei Ren,Zhiwei Chen,Xinxin Zhang,Yan Liang,Bo Jiang,Hua Xie,Min Ji,Min Wang,Xinkui Wang
标识
DOI:10.1021/acs.jpclett.5c02278
摘要
Photocatalysis holds significant promise for the reduction of CO2 to valued chemicals under mild conditions. However, its potential is severely limited by weak CO2 adsorption and slow proton-coupled electron transfer (PCET) rates. In this work, ZnIn2S4-based catalysts with varying hydroxyl contents were synthesized via the solvothermal method. The hydroxyl group, acting as a basic site, improves CO2 adsorption and inhibits the hydrogen evolution reaction (HER). Additionally, the hydroxyl group serves as a proton acceptor, facilitating proton transfer; the internal electric field formed by the redistribution of hydroxyl-induced charges promotes the separation of photogenerated carriers, jointly accelerating the PCET process. The hydroxyl-rich ZnIn2S4 catalyst exhibits superior CO2 reduction performance, with a CO generation rate of 4.55 mmol g-1 h-1, 20 times that of ZnIn2S4 with a lower hydroxyl content. Furthermore, the CO:H2 ratio is increased by 18. This study highlights the critical roles of PCET and effective CO2 adsorption in the CO2 reduction reactions.
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