Townsend E J, Alotaibi M, Mills B M, Watanabe K, Seddon A M, Faul C F J
School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK.
Bristol Centre for Functional Nanomaterials H.H. Wills Physics Laboratory University of Bristol Tyndall Avenue Bristol BS8 1TL.
ChemNanoMat. 2018 Aug;4(8):741-752. doi: 10.1002/cnma.201800194. Epub 2018 Jul 4.
In this focus review we aim to highlight an exciting class of materials, electroactive amphiphiles (EAAs). This class of functional amphiphilic molecules has been the subject of sporadic investigations over the last few decades, but little attempt has been made to date to gather or organise these investigations into a logical fashion. Here we attempted to gather the most important contributions, provide a framework in which to discuss them, and, more importantly, point towards the areas where we believe these EAAs will contribute to solving wider scientific problems and open new opportunities. Our discussions cover materials based on low molecular weight ferrocenes, viologens and anilines, as well as examples of polymeric and supramolecular EAAs. With the advances of modern analytical techniques and new tools for modelling and understanding optoelectronic properties, we believe that this area of research is ready for further exploration and exploitation.
在本重点综述中,我们旨在突出一类令人兴奋的材料——电活性两亲物(EAA)。在过去几十年里,这类功能性两亲分子一直是零星研究的对象,但迄今为止,几乎没有人尝试以合乎逻辑的方式收集或整理这些研究。在此,我们试图收集最重要的研究成果,提供一个讨论这些成果的框架,更重要的是,指出我们认为这些电活性两亲物将有助于解决更广泛科学问题并带来新机遇的领域。我们的讨论涵盖基于低分子量二茂铁、紫精和苯胺的材料,以及聚合物和超分子电活性两亲物的实例。随着现代分析技术以及用于建模和理解光电性质的新工具的发展,我们相信这一研究领域已准备好进行进一步的探索和开发。