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软胶体薄膜的干燥

Drying of Soft Colloidal Films.

作者信息

Kuk Keumkyung, Ringling Julian, Gräff Kevin, Hänsch Sebastian, Carrasco-Fadanelli Virginia, Rudov Andrey A, Potemkin Igor I, von Klitzing Regine, Buttinoni Ivo, Karg Matthias

机构信息

Institut für Physikalische Chemie I: Kolloide und Nanooptik, Heinrich-Heine-Universität Düsseldorf, Universitätsstr. 1, 40225, Düsseldorf, Germany.

Institute for Condensed Matter Physics, Soft Matter at Interfaces, Technische Universität Darmstadt, Hochschulstr. 8, 64289, Darmstadt, Germany.

出版信息

Adv Sci (Weinh). 2024 Dec;11(47):e2406977. doi: 10.1002/advs.202406977. Epub 2024 Nov 5.

Abstract

Thin films made of deformable micro- and nano-units, such as biological membranes, polymer interfaces, and particle-laden liquid surfaces, exhibit a complex behavior during drying, with consequences for various applications like wound healing, coating technologies, and additive manufacturing. Studying the drying dynamics and structural changes of soft colloidal films thus holds the potential to yield valuable insights to achieve improvements for applications. In this study, interfacial monolayers of core-shell (CS) microgels with varying degrees of softness are employed as model systems and to investigate their drying behavior on differently modified solid substrates (hydrophobic vs hydrophilic). By leveraging video microscopy, particle tracking, and thin film interference, this study shed light on the interplay between microgel adhesion to solid surfaces and the immersion capillary forces that arise in the thin liquid film. It is discovered that a dried replica of the interfacial microstructure can be more accurately achieved on a hydrophobic substrate relative to a hydrophilic one, particularly when employing softer colloids as opposed to harder counterparts. These observations are qualitatively supported by experiments with a thin film pressure balance which allows mimicking and controlling the drying process and by computer simulations with coarse-grained models.

摘要

由可变形的微米和纳米单元制成的薄膜,如生物膜、聚合物界面和载有颗粒的液体表面,在干燥过程中表现出复杂的行为,这对伤口愈合、涂层技术和增材制造等各种应用产生影响。因此,研究软胶体薄膜的干燥动力学和结构变化有可能为实现应用改进提供有价值的见解。在本研究中,具有不同柔软度的核壳(CS)微凝胶界面单层被用作模型系统,以研究它们在不同改性固体基质(疏水与亲水)上的干燥行为。通过利用视频显微镜、粒子跟踪和薄膜干涉,本研究揭示了微凝胶对固体表面的粘附与薄液膜中产生的浸入毛细力之间的相互作用。研究发现,相对于亲水基质,在疏水基质上可以更准确地获得界面微观结构的干燥复制品,特别是当使用较软的胶体而不是较硬的胶体时。薄膜压力平衡实验在定性上支持了这些观察结果,该实验允许模拟和控制干燥过程,粗粒度模型的计算机模拟也支持了这些观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9357/11653679/1412acb5b6e3/ADVS-11-2406977-g008.jpg

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