School of Chemical Sciences, Goa University, Taleigao Plateau, Goa-403 206, India.
Centre for Advanced Materials and Industrial Chemistry (CAMIC), School of Science, RMIT University, GPO Box 2476, Melbourne, Victoria 3001, Australia.
Chem Soc Rev. 2021 Sep 7;50(17):9845-9998. doi: 10.1039/d0cs00239a. Epub 2021 Jul 26.
In this review, we describe the developments in the field of naphthalene diimides (NDIs) from 2016 to the presentday. NDIs are shown to be an increasingly interesting class of molecules due to their electronic properties, large electron deficient aromatic cores and tendency to self-assemble into functional structures. Almost all NDIs possess high electron affinity, good charge carrier mobility, and excellent thermal and oxidative stability, making them promising candidates for applications in organic electronics, photovoltaic devices, and flexible displays. NDIs have also been extensively studied due to their potential real-world uses across a wide variety of applications including supramolecular chemistry, sensing, host-guest complexes for molecular switching devices, such as catenanes and rotaxanes, ion-channels, catalysis, and medicine and as non-fullerene accepters in solar cells. In recent years, NDI research with respect to supramolecular assemblies and mechanoluminescent properties has also gained considerable traction. Thus, this review will assist a wide range of readers and researchers including chemists, physicists, biologists, medicinal chemists and materials scientists in understanding the scope for development and applicability of NDI dyes in their respective fields through a discussion of the main properties of NDI derivatives and of the status of emerging applications.
在这篇综述中,我们描述了从 2016 年至今萘二酰亚胺(NDIs)领域的发展。由于其电子特性、大的缺电子芳香核和自组装成功能结构的趋势,NDIs 被证明是一类越来越有趣的分子。几乎所有的 NDIs 都具有高电子亲和力、良好的电荷载流子迁移率以及优异的热稳定性和氧化稳定性,这使得它们成为有机电子学、光伏器件和柔性显示器等应用的有前途的候选材料。由于其在各种应用中的潜在实际用途,包括超分子化学、传感、用于分子开关器件的主体-客体配合物(如轮烷和索烃)、离子通道、催化以及药物,以及作为太阳能电池中非富勒烯受体,NDIs 也得到了广泛的研究。近年来,关于超分子组装和力学发光性质的 NDI 研究也取得了相当大的进展。因此,通过讨论 NDI 衍生物的主要性质和新兴应用的现状,本综述将帮助包括化学家、物理学家、生物学家、药物化学家以及材料科学家在内的广泛读者和研究人员了解 NDI 染料在各自领域的发展和应用前景。