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The advantages of nanoparticle surfactants over Janus nanoparticles on structuring liquids

机译:纳米颗粒表面活性剂的优点Janus纳米粒子构建液体

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摘要

The nanoparticle (NP) surfactants generated in situ by binding NPs and polymers can assemble into an elastic NP monolayer at the interface of two immiscible liquids, structuring the liquids. Janus NPs can be more strongly bound to the interface than the NP surfactants, but they are unable to structure liquids into complex shapes due to the difficulty of assembling the jamming arrays. By molecular dynamics simulations, we give an insight into the better performance of NP surfactants than Janus NPs on dynamically structuring liquids. The high energy binding of Janus NPs to the interface will drive the Janus NPs to assemble into micelles in binary liquids. The micelles are stabilized in one liquid by encapsulating a little of the other liquid, hindering interfacial adsorption when the interface is marginally extended upon liquid deformation. In contrast, the in situ formed NP surfactants can rapidly fill the enlarged interfacial area to arrest the consecutive shape changes of the liquids. Moreover, NP surfactants can be designed with an appropriate coverage ratio (≤50%) of NP surface bearing host–guest sites to avoid dissolution and impart a desirable mechanical elasticity to their assembly.
机译:生成的纳米粒子(NP)表面活性剂现场通过绑定NPs和聚合物可以组装成一个弹性NP单层的接口两个水火不相容的,结构化的液体。Janus NPs可以绑定到更强烈比NP表面活性剂界面,但它们无法结构液体成复杂的形状由于装配的难度干扰数组。给一个洞察NP的更好的性能表面活性剂比Janus NPs动态构建液体。Janus NPs将推动Janus的接口NPs在二进制组装成胶束的液体。胶束稳定在一个液体封装一个其他的液体,阻碍时界面吸附对液体界面略微延长变形。表面活性剂可以迅速填补放大界面区域逮捕连续形状变化的液体。可以设计一个适当的覆盖率率(≤50%)的NP表面轴承主-客体网站为了避免解散和传授可取的机械弹性装配。

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