Shimizu Soji, Kobayashi Nagao
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.
Chem Commun (Camb). 2014 Jul 7;50(53):6949-66. doi: 10.1039/c4cc01526f.
This feature article summarizes recent contributions of the authors in the synthesis of structurally-modified subphthalocyanines. The structural modification covers (1) modification of the conjugated system of subphthalocyanines to create novel conjugated systems comprising three pyrroles or pyrrole-like subunits, (2) core-modification by expansion of the inner pyrrolic five-membered ring to larger six- and seven-membered ring units, and (3) exterior-modification by annulation of functional units to subphthalocyanines. These modifications in the structure of subphthalocyanines have been performed with the aim of demonstrating unique properties originating from the bowl-shaped C3v-symmetric structure as well as the electronic structure delineated by the 14π-electron conjugated system on the curved molecular surface. The possible structural modifications surveyed in this feature article and their concomitant properties will provide important future guidelines to the design of subphthalocyanine-based functional molecules, considering the fact that subphthalocyanines have recently been attracting considerable attention as potential candidates in the field of optoelectronics and molecular electronics.
这篇专题文章总结了作者们近期在结构修饰亚酞菁合成方面的贡献。结构修饰包括:(1)修饰亚酞菁的共轭体系,以创建包含三个吡咯或类吡咯亚基的新型共轭体系;(2)通过将内部吡咯五元环扩展为更大的六元环和七元环单元进行核心修饰;(3)通过将功能单元环合到亚酞菁上进行外部修饰。亚酞菁结构的这些修饰旨在展示源自碗状C3v对称结构以及由弯曲分子表面上的14π电子共轭体系描绘的电子结构的独特性质。考虑到亚酞菁最近作为光电子学和分子电子学领域的潜在候选物受到了相当大的关注,本文调查的可能的结构修饰及其伴随的性质将为基于亚酞菁的功能分子的设计提供重要的未来指导方针。