首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Encapsulation of inorganic nanoparticles into block copolymer micellar aggregates: Strategies and precise localization of nanoparticles
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Encapsulation of inorganic nanoparticles into block copolymer micellar aggregates: Strategies and precise localization of nanoparticles

机译:无机纳米颗粒到嵌段共聚物胶束聚集物中的包封:纳米颗粒的策略和精确定位

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摘要

Precise assembly and localization of preformed inorganic nanoparticles (NPs) in block copolymer (BCP) assemblies are of great importance in realizing the formation of nano-hybrids with high performance. Properties of the nanocomposites depend not only on those of individual building blocks but also on their spatial organization at different length scales, demonstrating unique optical, electrical, and magnetic properties. With the aid of the BCPs, NPs can form a broader range of structures in the nanoscopically confined geometry. Thus, many studies have focused on the selective localization of NPs in BCP aggregates. In this paper, we will outline recent advances in the preparation strategies for precise localization of inorganic NPs into BCP micelles, including co-precipitation, supramolecular assembly, interfacial instabilities of emulsion droplets, heatingecooling, electrostatic interaction, and others. Manipulating the balance between enthalpic and entropic contributions provides one of the opportunities to precisely control the spatial distribution of NPs in BCPs assemblies. We will focus on the principles of precise control of dispersion and localization of the NPs in BCP micelles. Potential applications of the hybrid micelles will finally be discussed, followed by the summary and outlook of this emerging area.
机译:嵌段共聚物(BCP)组件中预成型的无机纳米颗粒(NPs)的精确组装和定位对于实现高性能纳米复合材料的形成至关重要。纳米复合材料的性质不仅取决于各个构建基块的性质,还取决于它们在不同长度尺度上的空间组织,表现出独特的光学,电和磁性能。借助BCP,NP可以在纳米范围内形成更广泛的结构。因此,许多研究集中在NP在BCP聚集体中的选择性定位。在本文中,我们将概述将无机NP精确定位到BCP胶束中的制备策略的最新进展,包括共沉淀,超分子组装,乳液液滴的界面不稳定性,加热冷却,静电相互作用等。操纵焓和熵贡献之间的平衡提供了精确控制BCP组件中NP的空间分布的机会之一。我们将重点关注BCP胶束中NP分散和定位的精确控制原理。最后将讨论混合胶束的潜在应用,然后对该新兴领域进行概述和展望。

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