Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain; Unidad de Materia Condensada, Instituto Pluridisciplinar, Universidad Complutense de Madrid, Paseo Juan XXIII 1, 28040 Madrid, Spain.
Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain.
Adv Colloid Interface Sci. 2022 Apr;302:102620. doi: 10.1016/j.cis.2022.102620. Epub 2022 Mar 3.
Particles adsorbed to fluid interfaces are ubiquitous in industry, nature or life. The wide range of properties arising from the assembly of particles at fluid interface has stimulated an intense research activity on shed light to the most fundamental physico-chemical aspects of these systems. These include the mechanisms driving the equilibration of the interfacial layers, trapping energy, specific inter-particle interactions and the response of the particle-laden interface to mechanical perturbations and flows. The understanding of the physico-chemistry of particle-laden interfaces becomes essential for taking advantage of the particle capacity to stabilize interfaces for the preparation of different dispersed systems (emulsions, foams or colloidosomes) and the fabrication of new reconfigurable interface-dominated devices. This review presents a detailed overview of the physico-chemical aspects that determine the behavior of particles trapped at fluid interfaces. This has been combined with some examples of real and potential applications of these systems in technological and industrial fields. It is expected that this information can provide a general perspective of the topic that can be exploited for researchers and technologist non-specialized in the study of particle-laden interfaces, or for experienced researcher seeking new questions to solve.
吸附在流体界面上的颗粒在工业、自然界或生命中无处不在。颗粒在流体界面上组装所产生的广泛性质激发了人们对这些体系最基本物理化学方面的强烈研究兴趣。这些性质包括驱动界面层平衡、能量捕获、特定颗粒间相互作用以及颗粒负载界面对机械扰动和流动响应的机制。了解颗粒负载界面的物理化学性质对于利用颗粒稳定界面的能力来制备不同的分散体系(乳液、泡沫或胶体囊泡)以及制造新的可重构界面主导设备至关重要。
本综述详细概述了决定被困在流体界面上的颗粒行为的物理化学方面。这与这些体系在技术和工业领域的一些实际和潜在应用实例相结合。希望这些信息可以为非专门研究颗粒负载界面的研究人员和技术人员提供一个主题的总体视角,或者为寻求解决新问题的经验丰富的研究人员提供一个总体视角。