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Polymer Stereocomplexation as a Scalable Platform for Nanoparticle Assembly

机译:聚合物立体复合物作为纳米颗粒组装的可扩展平台

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DNA-mediated assembly of inorganic particles has demonstrated to be a powerful approach for preparing nanomaterials with a range of interesting optical and electrical properties. Building on this inspiration, we describe a generalizable gram-scale method to assemble nanoparticles through the formation of poly(methyl methacrylate) (PMMA) triple-helices. In this work, alkene-terminated syndiotactk (st-) and isotactic (it-) PMMA polymers were prepared and subsequently functionalized to afford nanoparticle ligands. Nanoparticles with complementary st- and it-PMMA ligands could then be spontaneously assembled upon mixing at room temperature. This process was robust and fully reversible through multiple heating and cooling cycles. The versatility of PMMA stereocomplexation was highlighted by assembling hybrid structures composed of nanoparticles of different compositions (e.g., Au and quantum dots) and shapes (e.g., spheres and rods). These initial demonstrations of nanoparticle self-assembly from inexpensive PMMA-based materials present an attractive alternative to DNA-based nanomaterials.
机译:DNA介导的无机颗粒组装已被证明是制备具有一系列有趣的光学和电学性质的纳米材料的有效方法。基于此灵感,我们描述了一种通用的克级方法,可通过形成聚甲基丙烯酸甲酯(PMMA)三重螺旋来组装纳米颗粒。在这项工作中,制备了烯烃封端的间同立构(st-)和全同立构(it-)PMMA聚合物,随后进行功能化以提供纳米粒子配体。然后,在室温下混合后,具有自组装的st-和it-PMMA配体的纳米粒子可以自发组装。通过多个加热和冷却循环,该过程非常坚固并且完全可逆。通过组装由不同组成的纳米颗粒(例如金和量子点)和形状(例如球和棒)组成的杂化结构,凸显了PMMA立体配合的多功能性。这些从廉价的基于PMMA的材料进行纳米粒子自组装的初步演示提出了基于DNA的纳米材料的有吸引力的替代方法。

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