Prieto Tania, Ponte Clara, Guntermann Roman, Medina Dana D, Salonen Laura M
CINBIO, Universidade de Vigo, Department of Organic Chemistry, 36310, Vigo, Spain.
Nanochemistry Research Group, International Iberian Nanotechnology Laboratory (INL), Av. Mestre José Veiga, 4715-330, Braga, Portugal.
Chemistry. 2024 Aug 12;30(45):e202401344. doi: 10.1002/chem.202401344. Epub 2024 Jul 23.
π-Conjugated materials are highly attractive owing to their unique optical and electronic properties. Covalent organic frameworks (COFs) offer a great opportunity for precise arrangement of building units in a π-conjugated crystalline matrix and tuning of the properties through choice of functionalities or post-synthetic modification. With this review, we aim at summarizing both the most representative as well as emerging strategies for the synthesis of π-conjugated COFs. We give examples of direct synthesis using large, π-extended building blocks. COFs featuring fully conjugated linkages such as vinylene, pyrazine, and azole are discussed. Then, post-synthetic modification methods that result in the extension of the COF π-system are reviewed. Throughout, mechanistic insights are presented when available. In the context of their utilization as film devices, we conduct a concise survey of the prominent COF layer deposition techniques reported and their aptness for the deposition of fused aromatic systems.
π共轭材料因其独特的光学和电子性质而极具吸引力。共价有机框架(COF)为在π共轭晶体基质中精确排列构建单元以及通过选择官能团或后合成修饰来调节性质提供了绝佳机会。在这篇综述中,我们旨在总结合成π共轭COF的最具代表性以及新兴的策略。我们给出了使用大的、π扩展构建块进行直接合成的示例。讨论了具有完全共轭连接(如亚乙烯基、吡嗪和唑)的COF。然后,综述了导致COF π体系扩展的后合成修饰方法。在整个过程中,如有可用信息,还会给出机理见解。在它们作为薄膜器件的应用背景下,我们对已报道的突出的COF层沉积技术及其对稠合芳族体系沉积的适用性进行了简要概述。