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Interconversion of Planar Networks and Vesicles Triggered by Temperature

机译:温度触发的平面网络与囊泡的相互转换

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摘要

Dumbbell-shaped amphiphiles based on an elongated rod segment can self-assemble into planar networks with in-plane hexagonally ordered pores in aqueous solution. On increasing temperature, the 2D networks change into hollow capsules passing through the closed sheets as an intermediate structure due to a LCST behavior of the oligoether dendritic exterior. The primary driving force for this interesting feature seems to originate from a consequence of the energy balance between hydrophobic interactions of anisotropic rod segments and alkyl chains, and repulsive interactions between dissimilar blocks. This dynamic structural variation triggered by external stimuli in a self-assembling system can provide a useful strategy to create smart supramolecular materials and biomimetic systems.
机译:基于细长杆段的哑铃形两亲物可以自组装成在网络中具有平面内六角形有序孔的平面网络。随着温度的升高,由于寡醚树突状外层的LCST行为,二维网络变成了作为中间结构通过封闭片材的空心胶囊。该有趣特征的主要驱动力似乎源自各向异性杆段和烷基链的疏水相互作用与不同嵌段之间的排斥相互作用之间的能量平衡。在自组装系统中,由外部刺激触发的这种动态结构变化可为创建智能超分子材料和仿生系统提供有用的策略。

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