Deng Quanhua, Li Haiping, Hu Wenxuan, Hou Wanguo
National Engineering Research Center for Colloidal Materials, School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong, 250100, China.
Stanley fertilizer (plain) Co., Ltd, Dezhou, Shandong, 250100, China.
Angew Chem Int Ed Engl. 2023 Nov 20;62(47):e202314213. doi: 10.1002/anie.202314213. Epub 2023 Oct 19.
Poly(heptazine imide) (PHI) salts, as crystalline carbon nitrides, exhibit high photocatalytic activity and are being extensively researched, but its photochemical instability has not drawn researchers' attention yet. Herein, sodium PHI (PHI-Na) ultrathin nanosheets with increased crystallinity, synthesized by enhancing contact of melamine with NaCl functioning as a structure-induction agent and hard template, exhibits improved photocatalytic hydrogen evolution activity, but low photochemical stability, owing to Na loss in the photocatalytic process, which, interestingly, can be enhanced by the common ion effect, e.g., addition of NaCl that is also able to remarkably increase the photoactivity with the apparent quantum yield at 420 nm reaching 41.5 %. This work aims at attracting research peers' attention to photochemical instability of PHI salts and provides a way to enhance their crystallinity.
聚(七嗪酰亚胺)(PHI)盐作为结晶性碳氮化物,具有高光催化活性,目前正受到广泛研究,但其光化学不稳定性尚未引起研究人员的关注。在此,通过增强三聚氰胺与作为结构诱导剂和硬模板的氯化钠的接触而合成的结晶度提高的PHI钠(PHI-Na)超薄纳米片,表现出改善的光催化析氢活性,但光化学稳定性较低,这是由于在光催化过程中钠的损失,有趣的是,这可以通过同离子效应得到增强,例如添加氯化钠,其还能够显著提高光活性,420 nm处的表观量子产率达到41.5%。这项工作旨在引起同行对PHI盐光化学不稳定性的关注,并提供一种提高其结晶度的方法。