首页> 外文期刊>Journal of the American Chemical Society >'Supramolecular' Assembly of Gold Nanorods End-Terminated with Polymer 'Pom-Poms': Effect of Pom-Pom Structure on the Association Modes
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'Supramolecular' Assembly of Gold Nanorods End-Terminated with Polymer 'Pom-Poms': Effect of Pom-Pom Structure on the Association Modes

机译:末端为聚合物“ Pom-Poms”的金纳米棒的“超分子”组装:Pom-Pom结构对缔合模式的影响

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摘要

We report a predefined self-organization of gold nanorods (NRs) end-terminated with multiple polymer arms ("pom-poms") in higher-order structures. The assembly of polymer-tethered NRs was controlled by changing the structure of the polymer pom-poms. We show that the variation in the molecular weight of the polymer molecules and their relative location with respect to the long side of the NRs resulted in two competing association modes of the nanorods, that is, their side-by-side and end-to-end assembly, and produced bundles, chains, rings, and bundled chains of the NRs. The superposition of the two variables controlling the organization of NRs allowed us to create a map showing the variation in the longitudinal plasmonic bands of the NRs achieved by their self-assembly.
机译:我们报告了预定义的金纳米棒(NRs)的自组织,该金纳米棒末端以更高阶结构的多个聚合物臂(“绒球”)终止。通过改变聚合物绒球的结构来控制聚合物束缚的NR的组装。我们表明,聚合物分子的分子量及其相对于NR的长边的相对位置的变化导致了纳米棒的两种竞争缔合模式,即它们的并列和端对端。末端组装,并生产NR的束,链,环和捆绑链。控制NRs组织的两个变量的叠加使我们能够创建一个图,显示通过其自组装实现的NRs的纵向等离激元带的变化。

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