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双缺陷修饰的石墨相氮化碳中的激发态动力学

Excited State Dynamics in Dual-Defects Modified Graphitic Carbon Nitride.

作者信息

Gumber Shriya, Agrawal Sraddha, Prezhdo Oleg V

机构信息

Department of Chemistry, University of Southern California, Los Angeles, California 90089, United States.

Department of Physics and Astronomy, University of Southern California, Los Angeles, California 90089, United States.

出版信息

J Phys Chem Lett. 2022 Feb 3;13(4):1033-1041. doi: 10.1021/acs.jpclett.1c04152. Epub 2022 Jan 24.

Abstract

Significant efforts are focused on defect-engineering of metal-free graphitic carbon nitride (g-CN) to amplify its efficacy. A conceptually new multidefect-modified g-CN having simultaneously two or more defects has attracted strong attention for its enhanced photocatalytic properties. We model and compare the excited state dynamics in g-CN with (i) nitrogen defects (N vacancy and CN group) and (ii) dual defects (N vacancy, CN group, and O doping) and show that the nonradiative recombination of charge carriers in these systems follows the Shockley-Read-Hall mechanism. The nitrogen defects create three midgap states that trap charges and act as recombination centers. The dual-defect modified systems exhibit superior properties compared with pristine g-CN because the defects facilitate rapid charge separation and extend the spectrum of absorbed light. The system doped with O shows better performance due to enhanced carrier lifetime and higher oxidation potential caused by a downshifted valence band. The study provides guidance for rational design of stable and efficient photocatalytic materials.

摘要

大量的努力都集中在无金属石墨相氮化碳(g-CN)的缺陷工程上,以增强其效能。一种概念上全新的具有同时两个或更多缺陷的多缺陷修饰g-CN因其增强的光催化性能而备受关注。我们对具有(i)氮缺陷(N空位和CN基团)和(ii)双缺陷(N空位、CN基团和O掺杂)的g-CN中的激发态动力学进行建模和比较,结果表明这些系统中电荷载流子的非辐射复合遵循肖克利-里德-霍尔机制。氮缺陷产生三个中间能隙态,这些态捕获电荷并充当复合中心。与原始g-CN相比,双缺陷修饰系统表现出优异的性能,因为这些缺陷有助于快速电荷分离并扩展吸收光的光谱范围。由于价带下移导致载流子寿命延长和氧化电位升高,O掺杂的系统表现出更好的性能。该研究为稳定高效光催化材料的合理设计提供了指导。

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