Bhattacharjee Sudip, Mondal Sumanta, Ghosh Anirban, Banerjee Soumadip, Das Abhijit K, Bhaumik Asim
School of Materials Sciences, Indian Association for the Cultivation of Science, 2A & 2B Raja S. C. Mullick Road, Jadavpur, Kolkata, 700032, India.
School of Mathematical & Computational Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700032, India.
Small. 2024 Dec;20(51):e2406723. doi: 10.1002/smll.202406723. Epub 2024 Oct 2.
Conjugated microporous polymers (CMPs) are an important class of organic materials with several useful features like, inherent nanoscale porosity, large specific surface area and semiconducting properties, which are very demanding for various sustainable applications. Carbazole building blocks are extensively used in designing photocatalysts due to easy electron donation and hole transportation. In the current study, a new CMP material CBZ-CMP containing carbazole unit used for photocatalytic C═N coupling reaction under blue light irradiation is designed. The CBZ-CMP framework is made through the polycondensation of 4,4'-di(9H-carbazol-9-yl)-1,1'-biphenyl using FeCl as a catalyst. The CBZ-CMP shows very high BET surface area of 1536 m g together with unimodal porosity (ca. 1.7 nm supermicropore), nanowire-like particle morphology (16-18 nm diameter), and low band gap property. The bi-phenyl moiety functions as the electron accepting center and the carbazole unit acts as the donor center, which accounts for the low band gap energy of CBZ-CMP. This nanoporous semiconducting CBZ-CMP material for photocatalytic benzylamine coupling reaction is explored, where it shows good conversion together with high selectivity under mild reaction conditions. This study offers simple method of preparation of a D-A-D-based porous photocatalyst for sustainable synthesis of value-added organics.
共轭微孔聚合物(CMPs)是一类重要的有机材料,具有一些有用的特性,如固有的纳米级孔隙率、大比表面积和半导体性能,这些特性在各种可持续应用中非常重要。咔唑结构单元由于易于电子供体和空穴传输,被广泛用于设计光催化剂。在当前的研究中,设计了一种用于蓝光照射下光催化C═N偶联反应的含咔唑单元的新型CMP材料CBZ-CMP。CBZ-CMP骨架是通过使用FeCl作为催化剂,使4,4'-二(9H-咔唑-9-基)-1,1'-联苯缩聚而成。CBZ-CMP具有1536 m²/g的非常高的BET表面积,以及单峰孔隙率(约1.7nm超微孔)、纳米线状颗粒形态(直径16-18nm)和低带隙特性。联苯部分作为电子接受中心,咔唑单元作为供体中心,这解释了CBZ-CMP的低带隙能量。探索了这种用于光催化苄胺偶联反应的纳米多孔半导体CBZ-CMP材料,它在温和的反应条件下显示出良好的转化率和高选择性。这项研究提供了一种简单的方法来制备基于D-A-D的多孔光催化剂,用于可持续合成增值有机物。