Ru Chenglong, Nie Xiaoyu, Lan Zhi-An, Pan Zhiming, Xing Wandong, Wang Sibo, Yu Jimmy C, Hou Yidong, Wang Xinchen
State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, 350108, P. R. China.
Department of Chemistry, The Chinese University of Hong Kong Shatin, New Territories, Hong Kong, P. R. China.
Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202417712. doi: 10.1002/anie.202417712. Epub 2024 Nov 14.
Strong excitonic effects are common in organic conjugated polymer semiconductors, severely hindering the generation of free charge carriers for conducting photocatalysis. Therefore, exploring new channels to modulate exciton dissociation in polymers is far-reaching in facilitating photocatalysis. A series of B-N Lewis pair functionalized conjugated polymers have been developed to minimize exciton effects by modulating charge transfer pathways. Theoretical studies have shown that introducing B-N Lewis pairs can dramatically increase the distance of charge transfer (D index) and the amount of electron transfer and reduce the Coulomb attraction energy (E), which contributes to breaking the equilibrium of the coexistence of excitons and charge carriers. Further experimental results show that the singlet excitons are efficiently dissociated into more free-charge carriers under photoexcitation to participate in surface reactions. The optimized polymer PyPBM shows an exponential increase in photocatalytic hydrogen and hydrogen peroxide production performance by visible light illumination.
强激子效应在有机共轭聚合物半导体中很常见,严重阻碍了用于光催化的自由电荷载流子的产生。因此,探索调节聚合物中激子解离的新途径对于促进光催化具有深远意义。已经开发出一系列B-N路易斯对功能化的共轭聚合物,通过调节电荷转移途径来最小化激子效应。理论研究表明,引入B-N路易斯对可以显著增加电荷转移距离(D指数)和电子转移量,并降低库仑吸引能(E),这有助于打破激子和电荷载流子共存的平衡。进一步的实验结果表明,单线态激子在光激发下有效地解离为更多的自由电荷载流子,以参与表面反应。优化后的聚合物PyPBM在可见光照射下光催化产氢和过氧化氢的性能呈指数增长。