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通过热触发表面活性剂置换实现胶体凝胶化

Colloidal Gelation through Thermally Triggered Surfactant Displacement.

作者信息

Cheng Li-Chiun, Sherman Zachary M, Swan James W, Doyle Patrick S

机构信息

Department of Chemical Engineering , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States.

出版信息

Langmuir. 2019 Jul 23;35(29):9464-9473. doi: 10.1021/acs.langmuir.9b00596. Epub 2019 Jul 12.

Abstract

Colloidal systems that undergo gelation attract much attention in both fundamental studies and practical applications. Rational tuning of interparticle interactions allows researchers to precisely engineer colloidal material properties and microstructures. Here, contrary to the traditional approaches where modulating attractive interactions is the major focus, we present a platform wherein colloidal gelation is controlled by tuning repulsive interactions. By including amphiphilic oligomers in colloidal suspensions, the ionic surfactants on the colloids are replaced by the nonionic oligomer surfactants at elevated temperatures, leading to a decrease in electrostatic repulsion. The mechanism is examined by carefully characterizing the colloids, and subsequently allowing the construction of interparticle potentials to capture the material behaviors. With the thermally triggered surfactant displacement, the dispersion assembles into a macroporous viscoelastic network and the gelling mechanism is robust over a wide range of compositions, colloid sizes, and component chemistries. This stimulus-responsive gelation platform is general and offers new strategies to engineer complex viscoelastic soft materials.

摘要

经历凝胶化的胶体系统在基础研究和实际应用中都备受关注。对粒子间相互作用进行合理调控,使研究人员能够精确设计胶体材料的性质和微观结构。在此,与传统方法主要聚焦于调节吸引相互作用不同,我们提出了一个通过调节排斥相互作用来控制胶体凝胶化的平台。通过在胶体悬浮液中加入两亲性低聚物,在升高温度时,胶体上的离子表面活性剂被非离子低聚物表面活性剂取代,导致静电排斥力降低。通过仔细表征胶体来研究其机制,随后构建粒子间势能以捕捉材料行为。随着热触发的表面活性剂置换,分散体组装成大孔粘弹性网络,并且凝胶化机制在广泛的组成、胶体尺寸和组分化学范围内都很稳健。这种刺激响应性凝胶化平台具有通用性,并为设计复杂的粘弹性软材料提供了新策略。

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