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通过S空位诱导原子分散钴用于光催化水分解:不对称配位与动态演化

Induced Manipulation of Atomically Dispersed Cobalt through S Vacancy for Photocatalytic Water Splitting: Asymmetric Coordination and Dynamic Evolution.

作者信息

Chen Meixue, Li Minhao, Zhang Shuqu, Liu Xia, Yang Lixia, Song Ren-Jie, Zou Jian-Ping, Luo Shenglian

机构信息

Key Laboratory of Jiangxi Province for Persistent Pollutants Prevention Control and Resource Reuse, Nanchang Hangkong University, Nanchang, Jiangxi Province, 330063, P. R. China.

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao, Shandong Province, 266071, P. R. China.

出版信息

Adv Sci (Weinh). 2024 Oct;11(39):e2405137. doi: 10.1002/advs.202405137. Epub 2024 Aug 13.

Abstract

It is still a challenge to construct single-atom level reduction and oxidation sites in single-component photocatalyst by manipulating coordination configuration for photocatalytic water splitting. Herein, the atomically dispersed asymmetric configuration of six-coordinated Co-SO (two exposed S atoms, two OH groups, and two Co─O─Zn bonds) suspending on ZnInS nanosheets verified by combining experimental analysis with theoretical calculation, is applied into photocatalytic water splitting. The Co-SO site immobilized by Vs acts as oxidation sites to guide electrons transferring to neighboring independent S atom, achieving efficient separation of reduction and oxidation sites. It is worth mentioning that stabilized Co-SO configuration show dynamic structure evolution to highly active Co-SO configuration (one exposed S atom, one OH group, and three Co─O─Zn bonds) in reaction, which lowers energy barrier of transition state for HO activization. Ultimately, the optimized photocatalyst exhibits excellent photocatalytic activity for water splitting (H: 80.13 µmol g h, O: 37.81 µmol g h) and outstanding stability than that of multicomponent photocatalysts due to dynamic and reversible evolution between stable Co-SO configuration and active Co-SO configuration. This work demonstrates new cognitions on immobilized strategy through vacancy inducing, manipulating coordination configuration, and dynamic evolution mechanism of single-atom level catalytic site in photocatalytic water splitting.

摘要

通过调控配位构型在单组分光催化剂中构建单原子级别的还原和氧化位点以用于光催化水分解仍然是一项挑战。在此,通过结合实验分析和理论计算验证的、悬浮在ZnInS纳米片上的六配位Co-SO(两个暴露的S原子、两个OH基团和两个Co─O─Zn键)的原子分散不对称构型被应用于光催化水分解。由Vs固定的Co-SO位点作为氧化位点,引导电子转移到相邻的独立S原子上,实现还原和氧化位点的有效分离。值得一提的是,稳定的Co-SO构型在反应中表现出向高活性Co-SO构型(一个暴露的S原子、一个OH基团和三个Co─O─Zn键)的动态结构演化,这降低了HO活化过渡态的能垒。最终,优化后的光催化剂表现出优异的光催化水分解活性(H:80.13 μmol g h,O:37.81 μmol g h),并且由于稳定的Co-SO构型和活性Co-SO构型之间的动态可逆演化,其稳定性优于多组分光催化剂。这项工作展示了关于空位诱导固定策略、调控配位构型以及光催化水分解中单原子级催化位点动态演化机制的新认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf93/11496988/6a325b907c1d/ADVS-11-2405137-g003.jpg

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