Wang Hui, Jiang Shenlong, Chen Shichuan, Zhang Xiaodong, Shao Wei, Sun Xianshun, Zhao Zhi, Zhang Qun, Luo Yi, Xie Yi
Hefei National Laboratory for Physical Science at the Microscale , Collaborative Innovation Center of Chemistry for Energy Materials , Synergetic Innovation Center of Quantum Information and Quantum Physics , University of Science and Technology of China , Hefei , Anhui 230026 , P. R. China . Email:
Chem Sci. 2017 May 1;8(5):4087-4092. doi: 10.1039/c7sc00307b. Epub 2017 Mar 24.
Understanding the photoexcitation processes in semiconductors is critical for the design of advanced photocatalytic materials. Nevertheless, traditional viewpoints focus on photogenerated free charge carriers, which are somehow invalid once the many-body effects are taken into account, especially for polymeric photocatalysts. Here we systematically investigate the photoexcitation processes involved in the polymer matrix of graphitic carbon nitride (g-CN) by combining photoluminescence spectroscopy and ultrafast transient absorption spectroscopy, validating the strong excitonic effects in the well-known photocatalyst for the first time. The identification of the robust triplet-triplet annihilation process, in which two triplet excitons collide to produce a singlet exciton, highlights an important nonradiative depopulation pathway of excited species and thereby offers potential strategies to regulate the photocatalytic activities of polymeric g-CN. The work establishes a new understanding of the photocatalytic mechanism in the polymeric g-CN matrix, and thus paves the way for designing effective polymeric photocatalysts through excitonic engineering.
理解半导体中的光激发过程对于先进光催化材料的设计至关重要。然而,传统观点聚焦于光生自由电荷载流子,一旦考虑多体效应,这种观点在某种程度上就失效了,尤其是对于聚合物光催化剂而言。在此,我们通过结合光致发光光谱和超快瞬态吸收光谱,系统地研究了石墨相氮化碳(g-CN)聚合物基体中涉及的光激发过程,首次验证了这种著名光催化剂中存在的强激子效应。对稳健的三重态-三重态湮灭过程(其中两个三重态激子碰撞产生一个单重态激子)的识别,突出了激发态物种的一条重要非辐射去激发途径,从而为调控聚合物g-CN的光催化活性提供了潜在策略。这项工作建立了对聚合物g-CN基体光催化机理的新认识,从而为通过激子工程设计有效的聚合物光催化剂铺平了道路。