Kong Xianxian, Yang Fan, Li Xiaoying, Fu Mengying, Zeng Tao, Song Shuang, He Zhiqiao, Yu Yan
College of Environmental, Zhejiang University of Technology, Hangzhou 310032, China.
College of Science & Technology, Ningbo University, Ningbo 315212, China.
Polymers (Basel). 2023 Apr 3;15(7):1781. doi: 10.3390/polym15071781.
A simple procedure of calcination under an Ar atmosphere has been successfully applied to create a covalent triazine framework bearing pyridine-type carbonitride moieties (PCN@CTF). The appending of PCN on the CTF led to visible light absorption at up to 600 nm in the UV/Vis diffuse-reflectance spectra. Photoluminescence and electrochemical impedance spectroscopy have been applied to clarify how modification of the CTF with PCN enhanced the separation efficiency of photoexcited charge carriers. An optimized 1%PCN@CTF sample showed the highest photocatalytic hydrogen evolution reaction (HER) rate of 170.2 ± 2.3 μmol g·h, 3.9 times faster than that over the pristine CTF. The apparent quantum efficiency of the HER peaked at (7.57 ± 0.10)% at 490 nm. This representative 1% PCN@CTF sample maintained continuous function for at least 15 h. This work provides new guidance for modification with PCN materials as a means of obtaining high photocatalytic efficiency and sheds light on the effect of appended pyridine rings on a CTF.
一种简单的在氩气气氛下煅烧的方法已成功应用于制备带有吡啶型碳氮化物部分的共价三嗪框架(PCN@CTF)。在CTF上附加PCN导致紫外/可见漫反射光谱中在高达600 nm处有可见光吸收。光致发光和电化学阻抗谱已被用于阐明用PCN对CTF进行改性如何提高光激发电荷载流子的分离效率。优化后的1%PCN@CTF样品显示出最高的光催化析氢反应(HER)速率,为170.2±2.3 μmol g·h,比原始CTF快3.9倍。HER的表观量子效率在490 nm处达到峰值(7.57±0.10)%。这种具有代表性的1%PCN@CTF样品至少能持续发挥作用15小时。这项工作为用PCN材料进行改性以获得高光催化效率提供了新的指导,并揭示了附加吡啶环对CTF的影响。