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Perylene diimide: Versatile building blocks for molecular self-assemblies, folding motifs, and reaction-directing codes

机译:ylene二酰亚胺:用于分子自组装,折叠基序和反应指导代码的多功能构建基块

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摘要

Perylene diimides (PDIs) have been playing important roles in several active fields. Therefore, we will first review the current methods to modify the skeleton of perylene diimides. Next, PDI self-assemblies and PDI folded nanostructures and chemically restrained PDI nanostructures are presented. Unusual physical properties due to nanostructures formation are discussed including the absorption band intensity reversal and π-stack red-fluorescence emission. Because of interesting π-stacked structures, PDI derivatives are considered as potential candidates for photovoltaic applications and organic electronics. More importantly, π-stacking can be tuned when the dihedral angle of the two naphthalene planes varies, thus resulting in adjusted interacting forces. Such cooperative forces lead to the discovery of molecular code phenomena, which will have profound impact an future bi-molecular reaction designs.
机译:二酰亚胺(PDI)在几个活跃领域中发挥着重要作用。因此,我们将首先回顾一下目前改性per二酰亚胺骨架的方法。接下来,介绍了PDI自组装和PDI折叠纳米结构以及受化学约束的PDI纳米结构。讨论了由于纳米结构形成而引起的异常物理性质,包括吸收带强度反转和π堆红色荧光发射。由于有趣的π堆叠结构,PDI衍生物被认为是光伏应用和有机电子学的潜在候选者。更重要的是,当两个萘平面的二面角变化时,可以调整π堆积,从而调整相互作用力。这种协同作用力导致了分子密码现象的发现,这将对未来的双分子反应设计产生深远的影响。

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