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Self-sorted assembly in a mixture of donor and acceptor chromophores

机译:供体和受体生色团混合物的自分类组装

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摘要

A simple and novel supramolecular approach for orthogonal self-assembly of donor and acceptor chromophores has been demonstrated. Suitably designed 1,5-dialkoxynaphthalene (DAN) and naphthalene tetracarboxylic acid diimide (NDI) derivatives were used as the donor and acceptor systems, respectively. The molecular design for self-sorting relies upon the precise control over the placement of the self-complementary hydrogenbonding units (amide functionality) with respect to the individual chromophore. By design, the distances between the two amide groups in the donor and acceptor chromophores are not identical, and consequently the effect of the hydrogen-bonding interaction cannot be maximised in the case of alternate donor-acceptor-type π-stacking. Thus a relatively weak charge-transfer interaction is expected to be sacrificed, and segregated assembly among the individual chromophores should be enforced by virtue of the much stronger effects of hydrogen bonding and π-π stacking. Detailed spectroscopic studies were carried out to probe the mode of self-assembly in various derivatives of the DAN-NDI donor-acceptor pairs to establish the utility of the molecular design as a generalised one for orthogonal self-assembly.
机译:已经证明了用于供体和受体生色团的正交自组装的简单新颖的超分子方法。适当设计的1,5-二烷氧基萘(DAN)和萘四甲酸二酰亚胺(NDI)衍生物分别用作供体和受体体系。用于自动分选的分子设计依赖于相对于单个生色团的自互补氢键单元(酰胺官能团)位置的精确控制。通过设计,供体和受体生色团中两个酰胺基团之间的距离不相同,因此,在交替的供体-受体型π堆积情况下,氢键相互作用的影响无法最大化。因此,预计将牺牲相对较弱的电荷转移相互作用,并且应借助于氢键和π-π堆积的更强作用来强制各个发色团之间的分离组装。进行了详细的光谱研究,以探究DAN-NDI供体-受体对的各种衍生物中的自组装模式,以建立分子设计作为通用的正交自组装分子的效用。

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