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首页> 外文期刊>Angewandte Chemie >Soft Polymer Janus Nanoparticles at Liquid-Liquid Interfaces
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Soft Polymer Janus Nanoparticles at Liquid-Liquid Interfaces

机译:液 - 液界面的软聚合物Janus纳米粒子

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摘要

Soft polymeric Janus nanoparticles (JNPs), made from polystyrene-b-poly(butadiene)-b-poly(methylmethacrylate), PS-PB-PMMA, triblock terpolymers, assemble into a monolayer at the water-oil interface to reduce interfacial tension. The extent to which the polymer chains can deform influences the packing density of the JNPs at the interface. The longer the polymer chains are relative to the core, the softer are the JNPs, resulting in a JNPs assembly with a lower initial lateral packing density. The interfacial activity of JNPs can be further tuned by complexation of the PMMA chains with lithium ions that are introduced into the water phase. This work provides a fundamental understanding of soft JNPs packing at the water-oil interface and provides a strategy to tailor the areal density of soft JNPs at liquid-liquid interface, enabling the design of smart responsive structured-liquid systems.
机译:由聚苯乙烯-B-聚(丁二烯)-B-聚(甲基丙烯酸甲酯),PS-PB-PMMA,三嵌段三元共聚物制成的软聚合珍珠纳米颗粒(JNP)组装成水油界面的单层,以降低界面张力。 聚合物链可以变形的程度会影响界面处的JNP的填充密度。 聚合物链相对于芯的越长,更柔软的是JNP,导致具有较低初始横向填充密度的JNP组件。 通过将PMMA链与引入水相的锂离子的络合,可以进一步调整JNP的界面活性。 这项工作对水油界面的软JNPS包装提供了基本的理解,并提供了一种在液体液体界面处定制软JNPS的面密度的策略,从而实现智能响应结构 - 液体系统的设计。

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