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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Self-assembly of L-glutamate based aromatic dendrons through the air/water interface: morphology, photodimerization and supramolecular chirality
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Self-assembly of L-glutamate based aromatic dendrons through the air/water interface: morphology, photodimerization and supramolecular chirality

机译:L-谷氨酸基芳香树突通过空气/水界面的自组装:形态,光二聚化和超分子手性

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摘要

A series of dendrimers containing focal aromatic rings, ranged from phenyl, naphthyl, anthryl to pyrenyl, and the L-glutamate peripheral groups were designed and their self-assembly through the air/water interface was investigated. It has been found that although these dendrimers have no long alkyl chains, some of the dendrimers could form stable monolayers at the air/water interface due to an appropriate balance between the hydrophobic core and the hydrophilic peripheral group. Nanofibers were observed for the monolayers of the dendrimer containing a 2-anthryl group, while nanostrips were observed for that containing a pyrenyl group. In contrast to the dendrimers in solution, the molecular chirality at the chiral center of L-glutamate was transferred to the supramolecular assemblies in the films, indicating the effect of the interfacial assembly. For the dendrimers containing an anthryl core, photodimerization occurred. The photoirradiation was carried out under different conditions such as in solution, in a floating monolayer and in the transferred LB films. Different morphologies were obtained. These results indicated that the photoreaction of an anthryl dendrimer can be regulated through the interfacial organization, which leads to different packing as well as the subsequent photoreaction.
机译:设计了一系列含有焦点芳香环的树枝状大分子,其范围从苯基,萘基,蒽基到pyr基,以及L-谷氨酸的外围基团,并研究了它们通过空气/水界面的自组装。已经发现,尽管这些树枝状聚合物没有长的烷基链,但是由于疏水性核与亲水性外围基团之间的适当平衡,一些树枝状聚合物可以在空气/水界面处形成稳定的单层。观察到含有2-蒽基的树枝状聚合物单层的纳米纤维,而观察到含有a基的树枝状的纳米带。与溶液中的树枝状聚合物相反,在L-谷氨酸的手性中心的分子手性转移至膜中的超分子组装体,表明界面组装体的作用。对于含有蒽基核的树枝状聚合物,发生了光二聚化。在不同的条件下,例如在溶液中,在浮动单层中和在转移的LB膜中进行光辐照。获得了不同的形态。这些结果表明,可以通过界面组织调节蒽树枝状大分子的光反应,这导致不同的堆积以及随后的光反应。

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