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Supramolecular Assemblies by Charge-Transfer Interactions between Donor and Acceptor Chromophores

机译:供体和受体生色团之间的电荷转移相互作用的超分子组装。

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We have collated various supramolecular designs that utilize organic donor-acceptor CT complexation to generate noncovalently co-assembled structures including fibrillar gels, micelles, vesicles, nano-tubes, foldamers, conformationally restricted macromolecules, and liquid crystalline phases. Possibly inspired by nature, chemists have extensively used hydrogen bonding as a tool for supramolecular assemblies of a diverse range of abiotic building blocks. As a structural motif, CT complexes can be compared to hydrogen-bonded complexes in its directional nature and complementarities. Additional advantages of CT interactions include wider solvent tolerance and easy spectroscopic probing. Nevertheless the major limitation is their low association constant. This article shows different strategies have evolved over the years to overcome this drawback by reinforcing the CT interactions with auxiliary noncovalent forces without hampering the alternate stacking mode. Emerging reports on promising CT complexes in organic electronics are intimately related to various supramolecular designs that one can postulate based on donor-acceptor CT interactions.
机译:我们整理了各种利用有机供体-受体CT络合产生超共价共组装结构的超分子设计,包括纤维状凝胶,胶束,囊泡,纳米管,折叠剂,构象受限的大分子和液晶相。化学家可能受到自然界的启发,已广泛使用氢键作为各种非生物构建基超分子组装的工具。作为结构基序,CT配合物在方向性和互补性方面可与氢键配合物进行比较。 CT相互作用的其他优点包括更宽的溶剂耐受性和简便的光谱探测。然而,主要的限制是它们的低缔合常数。本文显示了多年来为克服此缺点而采取的不同策略,这些方法通过在不妨碍替代堆叠模式的情况下通过辅助非共价力增强CT相互作用来克服这一缺陷。关于有机电子中有希望的CT复合物的新兴报道与各种超分子设计密切相关,人们可以基于供体-受体CT相互作用来推测各种超分子设计。

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