Laboratory of Organic and Macromolecular Chemitry (IOMC), Friedrich-Schiller-University Jena, Humboldtstr. 10, 07743 Jena, Germany.
Adv Mater. 2011 Aug 16;23(31):3484-98. doi: 10.1002/adma.201101251. Epub 2011 Jul 13.
Terpyridines represent versatile functional supramolecular building blocks that are easily integrated in numerous devices and can readily modify surfaces. In particular, redox-active complexes with terpyridine ligands have been attached to surfaces, either by covalent or non-covalent interactions, and form highly ordered mono- or multilayer systems, since electronic and charge transport properties are major topics of interest. Their applications in nanoelectronics are a driving force for understanding and enabling the utilization of the supramolecular properties of terpyridines for surface modification. This area of research has received increasing attention during the last decade leading into the supramacromolecular regime. This Progress Report presents an overview of the state-of-the-art of surface modifications utilizing terpyridine systems and highlights main results, as well as modern trends, in this research area.
嘧啶代表多功能的功能超分子构建基块,它们很容易集成到许多设备中,并可以轻松地修饰表面。特别是,具有联吡啶配体的氧化还原活性配合物已经通过共价或非共价相互作用附着在表面上,并形成高度有序的单层或多层系统,因为电子和电荷输运性质是主要关注的问题。它们在纳米电子学中的应用是理解和实现联吡啶超分子性质在表面修饰中应用的驱动力。在过去十年中,这个研究领域受到了越来越多的关注,进入了超分子领域。本进展报告概述了利用嘧啶系统进行表面修饰的最新技术,并强调了该研究领域的主要结果和现代趋势。