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Nanorods in functionalized block-copolymer gels: Flexible ladders and liquid crystalline order in curved geometries

机译:功能化嵌段共聚物凝胶中的纳米棒:弯曲几何形状的柔性梯子和液晶顺序

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摘要

Polymer nanocomposites (PNCs) hold great promise for designing novel materials. Current challenges in PNCs are achieving nanosized dispersion of the inorganic component as well as robust control of nanoparticle orientation. We show that a gel of multi-block polymers with functionalized end groups that have specific affinity towards nanorods provides a general example of a PNC where the inorganic component is dispersed at the nanometer scale and displays long range as well as orientation order. We find a novel type of liquid crystalline (LC) order consisting of thin nanorod strips, i.e., "flexible ladders" (FL). Depending on concentration and affinity, FL display positional long-range order and patch together into 2D smectic phases. We discuss implications for designing new PNCs and address possible realizations of our systems via DNA linkers. The problem of LC order on curved geometries is also discussed.
机译:聚合物纳米复合材料(PNC)在设计新型材料方面具有广阔的前景。 PNC中的当前挑战是实现无机组分的纳米级分散以及对纳米粒子取向的强大控制。我们显示具有对纳米棒具有特定亲和力的具有官能化端基的多嵌段聚合物的凝胶提供了PNC的一般示例,其中无机组分以纳米级分散并且显示长距离以及取向顺序。我们发现一种由薄的纳米棒条组成的新型液晶(LC)阶,即“柔性梯”(FL)。根据浓度和亲和力,FL显示位置远距离顺序并将其拼凑成2D近晶相。我们讨论了设计新PNC的意义,并探讨了通过DNA接头实现我们系统的可能实现。还讨论了弯曲几何上的LC阶数问题。

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