Visible light-driven oxidative coupling of dibenzylamine and substituted anilines with a 2D WSe 2 nanomesh material

A novel 2D WSe 2 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 WSe 2 inside a 3D confined pore space is mainly attributed to the synergistic effect arising from the crystal self-limitation g...

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Veröffentlicht in:Nanoscale 2020-11, Vol.12 (42), p.21869-21878
Hauptverfasser: Chai, Kejie, Shi, Yifeng, Wang, Yanqiong, Zou, Peijie, Yuan, Qingrong, Xu, Weiming, Zhang, Pengfei
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container_end_page 21878
container_issue 42
container_start_page 21869
container_title Nanoscale
container_volume 12
creator Chai, Kejie
Shi, Yifeng
Wang, Yanqiong
Zou, Peijie
Yuan, Qingrong
Xu, Weiming
Zhang, Pengfei
description A novel 2D WSe 2 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 WSe 2 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 WSe 2 material and to the space-limitation effect coming from the unique pore structure of the SBA-15 template. The 2D WSe 2 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.
doi_str_mv 10.1039/D0NR05128D
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title Visible light-driven oxidative coupling of dibenzylamine and substituted anilines with a 2D WSe 2 nanomesh material
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