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Precise Localization of Inorganic Nanoparticles in Block Copolymer Micellar Aggregates: From Center to Interface

机译:嵌段共聚物胶束聚集物中无机纳米粒子的精确定位:从中心到界面

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Localization of inorganic nanoparticles (NPs) into polymer matrix plays a crucial role in determining the performance of the hybrid materials. Herein, we employed a simple, yet versatile hydrogen bonding directed supramolecular assembly (HBSA) strategy to control the localization of Au NPs from the center to the interface in polystyrene-block-poly(4-vinylpyridine) (PS-b-P4VP) cylindrical micellar aggregates by tailoring the selectivity of polymer brushes on the surface of Au NPs. PS-b-P4VP(PDP)(x) combcoil supramolecules were constructed by PS-b-P4VP and n-pentadecylphenol (PDP) via the hydrogen bonding between the pyridine of P4VP and the hydroxyl of PDP. PS-tethered Au NPs (PS-Au NPs) were selectively localized in the PS domain while a binary mixture of PS and P4VP-tethered Au NPs (PS/P4VP-Au NPs) were adsorbed to the interface between PS and P4VP(PDP)x domains presumably due to the redistribution of PS and P4VP ligands on the Au NPs surface, triggering the formation of amphiphilic surfactant-like NPs. Isolated cylindrical micellar aggregates with controlled localization of Au NPs were obtained by the selective disassembly of the supramolecules. Moreover, supramolecular block domain size, composition of the supramolecules, size of the Au NPs, and volume fraction of the Au NPs were carefully investigated to reveal their effects on the morphology of hybrid micellar aggregates and localization of NPs. These hybrid micellar aggregates with controlled localization and loading efficiency of Au NPs may extend the applications of the hybrid micellar aggregates and find more potential uses in optical/electronic devices, catalysis, and drug delivery system.
机译:无机纳米颗粒(NPs)在聚合物基质中的定位在决定杂化材料的性能方面起着至关重要的作用。在这里,我们采用了一种简单而通用的氢键定向超分子组装(HBSA)策略来控制Au NPs从中心到聚苯乙烯-嵌段-聚(4-乙烯基吡啶)(PS-b-P4VP)圆柱体的界面的定位通过调整Au NPs表面聚合物刷的选择性来胶束聚集。 PS-b-P4VP(PDP)(x)梳状超分子是由PS-b-P4VP和正十五烷基苯酚(PDP)通过P4VP的吡啶与PDP的羟基之间的氢键构成的。 PS束缚的Au NP(PS-Au NPs)选择性地定位在PS域中,而PS和P4VP束缚的Au NPs(PS / P4VP-Au NPs)的二元混合物被吸附到PS和P4VP(PDP)之间的界面上x域可能是由于PS和P4VP配体在Au NPs表面的重新分布,触发了两亲性表面活性剂样NP的形成。通过超分子的选择性拆卸,获得具有受控的Au NPs定位的分离的圆柱状胶束聚集体。此外,仔细研究了超分子嵌段结构域的大小,超分子的组成,Au NPs的大小和Au NPs的体积分数,以揭示它们对杂化胶束聚集体形态和NPs定位的影响。这些具有控制的金纳米颗粒的定位和负载效率的混合胶束聚集体可以扩展混合胶束聚集体的应用,并在光学/电子设备,催化和药物递送系统中发现更多的潜在用途。

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