Department of Chemistry Dhemaji College, Dhemaji, 787057, Assam, India.
Institute of Chemistry, The Hebrew University of Jerusalem Edmond J. Safra Campus, Jerusalem, 91904, Israel.
ChemistryOpen. 2023 Jan;12(1):e202200203. doi: 10.1002/open.202200203.
Heterocyclic systems are now considered to be an integral part of material chemistry. Thiophene, selenophene, furan, pyrrole, carbazole, triazine and others are some such examples worth mentioning. 2,4,6-Tri(thiophen-2-yl)-1,3,5-triazine is a C -symmetric system with thiophene as the donor unit and s-triazine as the acceptor unit. This review gives an insight into the advances made in the thienyl-triazine chemistry over the past two to three decades. The synthetic pathways for arriving at this system and all its important derivatives are provided. The major focus is on the materials synthesized using the thienyl-triazine system, including star molecules, linear and hyperbranched polymers, porous materials and their diverse applications. This review will play a catalytic role for new dimensions to be explored in thienyl-triazine chemistry.
杂环体系现在被认为是材料化学的一个组成部分。噻吩、硒吩、呋喃、吡咯、咔唑、三嗪等就是一些值得提及的例子。2,4,6-三(噻吩-2-基)-1,3,5-三嗪是一个具有 C 对称性的体系,噻吩作为给体单元,s-三嗪作为受体单元。这篇综述深入探讨了过去二十到三十年中噻吩-三嗪化学的进展。提供了到达这个体系及其所有重要衍生物的合成途径。主要重点是使用噻吩-三嗪体系合成的材料,包括星型分子、线性和超支化聚合物、多孔材料及其各种应用。这篇综述将为噻吩-三嗪化学探索新维度发挥催化作用。