Zhang Wei, Xu Congying, Kobayashi Takeshi, Zhong Yun, Guo Zhiyong, Zhan Hongbing, Pruski Marek, Huang Wenyu
College of Materials Science and Engineering, Fuzhou University, Fuzhou, 350108, P. R. China.
Van't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands.
Chemistry. 2020 Jun 10;26(33):7358-7364. doi: 10.1002/chem.202000934. Epub 2020 Jun 2.
Heptazine-based conjugated polymeric carbon nitrides (PCNs) are promising metal-free photocatalysts, yet their synthesis is challenging due to the electron-deficiency and insolubility of heptazine units. Indeed, heptazine-containing polymers have only been prepared through nucleophilic substitution with amines by using toxic cyameluric chloride as the starting material. Herein, we report the novel and environmentally friendly method for preparing heptazine-based mesoporous PCNs with hydrazone links formed through a simple Schiff base condensation of melem-NH and aldehydes. Unlike cyameluric chloride, melem-NH is non-toxic, stable, and can be readily obtained from melem and hydrazine in solution. We demonstrate that the hydrazone linkages and the heptazine units synergistically enhance the photocatalytic activity of PCNs in visible-light-driven aerobic oxidation of benzyl alcohol to benzaldehyde. In particular, the polymer constructed from melem-NH and p-phthalaldehyde shows 17 times more activity than graphitic carbon nitride (g-C N ).
基于七嗪的共轭聚合物氮化碳(PCNs)是很有前景的无金属光催化剂,然而由于七嗪单元的缺电子性和不溶性,其合成具有挑战性。实际上,含七嗪的聚合物仅通过使用有毒的三聚氯氰作为起始原料与胺进行亲核取代来制备。在此,我们报道了一种新颖且环境友好的方法,用于制备具有腙键连接的基于七嗪的介孔PCNs,该腙键通过三聚氰胺 - NH与醛的简单席夫碱缩合形成。与三聚氯氰不同,三聚氰胺 - NH无毒、稳定,并且可以很容易地从三聚氰胺和肼在溶液中获得。我们证明,腙键和七嗪单元协同增强了PCNs在可见光驱动的苄醇有氧氧化为苯甲醛反应中的光催化活性。特别是,由三聚氰胺 - NH和对苯二甲醛构建的聚合物表现出比石墨相氮化碳(g-C₃N₄)高17倍的活性。