Chai Kejie, Shi Yifeng, Wang Yanqiong, Zou Peijie, Yuan Qingrong, Xu Weiming, Zhang Pengfei
College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou 311121, China.
Nanoscale. 2020 Nov 5;12(42):21869-21878. doi: 10.1039/d0nr05128d.
A novel 2D WSe2 nanomesh material was synthesized with a 3D SBA-15 mesoporous material via a nanocasting strategy. The formation of the 2D sheet-like nanomesh structure of WSe2 inside a 3D confined pore space is mainly attributed to the synergistic effect arising from the crystal self-limitation growth caused by the layered crystal structure of the WSe2 material and to the space-limitation effect coming from the unique pore structure of the SBA-15 template. The 2D WSe2 nanomesh material possesses extremely high exposure of crystal layer edges, making it an excellent photocatalyst. It shows good visible light-driven photocatalytic performance in oxidative coupling of dibenzylamine and 2-amino/hydroxy/mercaptoanilines to prepare a group of heterocyclic compounds, including benzimidazoles, benzoxazoles and benzothiazoles with oxygen as the sole oxidant. A gram-scale experiment was also carried out to exhibit the scope of this method.
通过纳米浇铸策略,利用三维SBA-15介孔材料合成了一种新型二维WSe₂纳米网材料。WSe₂的二维片状纳米网结构在三维受限孔空间内的形成主要归因于WSe₂材料的层状晶体结构引起的晶体自限生长以及SBA-15模板独特孔结构产生的空间限制效应的协同作用。二维WSe₂纳米网材料具有极高的晶体层边缘暴露率,使其成为一种优异的光催化剂。在以氧气作为唯一氧化剂将二苄胺与2-氨基/羟基/巯基苯胺进行氧化偶联以制备包括苯并咪唑、苯并恶唑和苯并噻唑在内的一组杂环化合物的反应中,它表现出良好的可见光驱动光催化性能。还进行了克级实验以展示该方法的适用范围。