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首页> 外文期刊>ACS applied materials & interfaces >Self-Assembly of Aqueous Soft Matter Patterned by Liquid-Crystal Polymer Networks for Controlling the Dynamics of Bacteria
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Self-Assembly of Aqueous Soft Matter Patterned by Liquid-Crystal Polymer Networks for Controlling the Dynamics of Bacteria

机译:由液晶聚合物网络图案化的自组装,用于控制细菌动态的

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摘要

The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme across multiple disciplines such as physics, chemistry, biology, and materials science. In this work, we use liquid-crystal polymer networks (LCNs) to control the superstructures of one aqueous soft material called lyotropic chromonic liquid crystals (LCLCs), which shows spontaneous orientational order by stacking the plank-like molecules into elongated aggregates. We synthesize a layer of patterned LCN films by a nematic liquid-crystal host in which the spatially varying molecular orientations are predesigned by plasmonic photopatterning. We demonstrate that the LCLC aggregates are oriented parallel to the polymer filaments of the LCN film. This patterned aqueous soft material shows immediate application for controlling the dynamics of swimming bacteria. The demonstrated control of the supramolecular assembly of aqueous soft matter by using a stimuli-responsive LCN film will find applications in designing dynamic advanced materials for bioengineering applications.
机译:控制含水软质的分子自组装的研究是跨多个学科的基本方案,如物理,化学,生物学和材料科学。在这项工作中,我们使用液晶聚合物网络(LCNS)来控制一种含有溶液色液晶(LCLC)的一种含水软质材料的上层结构,其通过将木板状分子堆叠成细长的聚集体来显示自发定义阶。我们通过向液晶液体宿主合成一层图案化的LCN膜,其中通过等离子体光刻来预测空间变化的分子取向。我们证明,LCLC聚集体与LCN膜的聚合物长线平行定向。该图案化的水性软材料显示了控制游泳细菌动态的立即应用。通过使用刺激响应性LCN薄膜证明了对水性柔软物质的超分子组装的控制将在设计生物工程应用的动态先进材料中找到应用。

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