Zhong Xiang, Zhu Yuxiang, Jiang Meng, Sun Qiufan, Yao Jianfeng
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing, Jiangsu, 210037, P. R. China.
ChemSusChem. 2023 Apr 21;16(8):e202202059. doi: 10.1002/cssc.202202059. Epub 2023 Mar 6.
Porous triazine-/heptazine-based carbon nitride (THCN) homojunction with chloride (Cl) doping was synthesized by a simple, one-step photochemical synthesis route for efficient visible-light-driven overall water splitting. The phase ratio of triazine-based carbon nitride (TCN) and heptazine-based carbon nitride (HCN), texture and morphology of the THCN isotype junction were finely tuned by varying ultraviolet irradiation time and washing solvents. After washing with acetonitrile, the resulting porous THCN nanosheets with 48 h irradiation contain 21 wt % TCN and 79 wt % HCN units and reveal a significantly improved photocatalytic performance with H and O production rates up to 7.9 and 4.2 μmol h , respectively, about 3.8 times higher than that of THCN prepared by 36 h illumination. The dual-phase interaction, holey structure, and Cl dopants favor the exposure of active sites, extended visible-light harvesting, accelerated charge transfer, and enhanced photoreduction ability, thereby improving photocatalytic activity.
通过简单的一步光化学合成路线,合成了具有氯(Cl)掺杂的多孔三嗪/七嗪基氮化碳(THCN)同质结,用于高效可见光驱动的全分解水。通过改变紫外线照射时间和洗涤溶剂,对三嗪基氮化碳(TCN)和七嗪基氮化碳(HCN)的相比例、THCN同型结的织构和形态进行了精细调控。用乙腈洗涤后,经48小时照射得到的多孔THCN纳米片含有21 wt%的TCN单元和79 wt%的HCN单元,其光催化性能显著提高,产氢和产氧速率分别高达7.9和4.2 μmol h,比36小时光照制备的THCN高出约3.8倍。双相相互作用、多孔结构和Cl掺杂剂有利于活性位点的暴露、扩展可见光吸收、加速电荷转移和增强光还原能力,从而提高光催化活性。