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表面活性剂介导的颗粒间接触对超颗粒机械稳定性的影响。

Influence of Surfactant-Mediated Interparticle Contacts on the Mechanical Stability of Supraparticles.

作者信息

Wang Junwei, Kang Eunsoo, Sultan Umair, Merle Benoit, Inayat Alexandra, Graczykowski Bartlomiej, Fytas George, Vogel Nicolas

机构信息

Institute of Particle Technology, Friedrich-Alexander University Erlangen-Nürnberg, Cauerstrasse 4, 91058 Erlangen, Germany.

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

J Phys Chem C Nanomater Interfaces. 2021 Oct 28;125(42):23445-23456. doi: 10.1021/acs.jpcc.1c06839. Epub 2021 Oct 18.

Abstract

Colloidal supraparticles are micron-scale spherical assemblies of uniform primary particles, which exhibit emergent properties of a colloidal crystal, yet exist as a dispersible powder. A prerequisite to utilize these emergent functionalities is that the supraparticles maintain their mechanical integrity upon the mechanical impacts that are likely to occur during processing. Understanding how the internal structure relates to the resultant mechanical properties of a supraparticle is therefore of general interest. Here, we take the example of supraparticles templated from water/fluorinated oil emulsions in droplet-based microfluidics and explore the effect of surfactants on their mechanical properties. Stable emulsions can be generated by nonionic block copolymers consisting of a hydrophilic and fluorophilic block and anionic fluorosurfactants widely available under the brand name Krytox. The supraparticles formed in the presence of both types of surfactants appear structurally similar, but differ greatly in their mechanical properties. While the nonionic surfactant induces superior mechanical stability and ductile fracture behavior, the anionic Krytox surfactant leads to weak supraparticles with brittle fracture. We complement this macroscopic picture with Brillouin light spectroscopy that is very sensitive to the interparticle contacts for subnanometer-thick adsorbed layers atop of the nanoparticle. While the anionic Krytox does not significantly affect the interparticle bonds, the amphiphilic nonionic surfactant drastically strengthens these bonds to the point that individual particle vibrations are not resolved in the experimental spectrum. Our results demonstrate that seemingly subtle changes in the physicochemical properties of supraparticles can drastically impact the resultant mechanical properties.

摘要

胶体超粒子是由均匀的初级粒子组成的微米级球形聚集体,它们表现出胶体晶体的涌现特性,但以可分散粉末的形式存在。利用这些涌现功能的一个先决条件是,超粒子在加工过程中可能发生的机械冲击下保持其机械完整性。因此,了解内部结构如何与超粒子的最终机械性能相关是一个普遍感兴趣的问题。在这里,我们以基于液滴的微流控技术中由水/氟化油乳液模板化的超粒子为例,探讨表面活性剂对其机械性能的影响。由亲水性和氟ophilic性嵌段组成的非离子嵌段共聚物和以Krytox品牌广泛使用的阴离子氟表面活性剂可以产生稳定的乳液。在两种类型的表面活性剂存在下形成的超粒子在结构上看起来相似,但在机械性能上有很大差异。虽然非离子表面活性剂诱导出优异的机械稳定性和韧性断裂行为,但阴离子Krytox表面活性剂导致超粒子较弱,具有脆性断裂。我们用布里渊光谱对这一宏观图景进行补充,布里渊光谱对纳米颗粒顶部亚纳米厚吸附层的颗粒间接触非常敏感。虽然阴离子Krytox对颗粒间键没有显著影响,但两亲性非离子表面活性剂极大地增强了这些键,以至于在实验光谱中无法分辨单个颗粒的振动。我们的结果表明,超粒子物理化学性质看似细微的变化会极大地影响最终的机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e82/8558861/15081e099cd3/jp1c06839_0001.jpg

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