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扁球形核壳聚甲基丙烯酸甲酯椭球体的制备与追踪

Preparation and Tracking of Oblate Core-Shell Polymethyl-Methacrylate Ellipsoids.

作者信息

Voggenreiter Markus, Roller Jörg, Geiger John, Ebner Lukas, Zumbusch Andreas, Meijer Janne-Mieke

机构信息

Department of Chemistry, University of Konstanz, Universitätsstraße 10, 78457 Konstanz, Germany.

Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Langmuir. 2020 Nov 3;36(43):13087-13095. doi: 10.1021/acs.langmuir.0c02597. Epub 2020 Oct 21.

Abstract

Although single-particle level studies on prolate ellipsoidal colloids are relatively abundant, similar studies on oblate ellipsoids are rare because suitable model systems are scarcely available. Here, we present the preparation of monodisperse hard core-shell oblate ellipsoids that can be imaged and tracked in 3D with confocal laser scanning microscopy. Using a thermomechanical squeezing method, we transform spherical core-shell polymethyl-methacrylate (PMMA) particles into oblate ellipsoids. We show how the shape polydispersity as well as the aspect ratio of the obtained oblate ellipsoids can be controlled. In addition, we discuss how the core-shell geometry limits the range of aspect ratios because of the different viscoelastic properties of the cross-linked PMMA core and linear PMMA shell. We further demonstrate imaging of the core-shell oblate dispersions on a single-particle level in real space and time and the tracking of position and orientation using our recently developed tracking algorithm for anisotropic core-shell colloids. Our results thus provide the tools for the future investigation of the behavior of oblate ellipsoids, especially in dense suspensions.

摘要

尽管关于长椭球形胶体的单粒子水平研究相对丰富,但关于扁椭球体的类似研究却很少,因为合适的模型系统几乎没有。在此,我们展示了单分散硬核-壳层扁椭球体的制备方法,该扁椭球体可用共聚焦激光扫描显微镜进行三维成像和跟踪。我们使用热机械挤压方法,将球形核壳聚甲基丙烯酸甲酯(PMMA)颗粒转化为扁椭球体。我们展示了如何控制所得扁椭球体的形状多分散性以及纵横比。此外,我们讨论了由于交联PMMA核和线性PMMA壳的粘弹性不同,核壳几何结构如何限制纵横比的范围。我们进一步展示了在实空间和时间中对核壳扁椭球体分散体进行单粒子水平成像,以及使用我们最近开发的用于各向异性核壳胶体的跟踪算法对位置和方向进行跟踪。因此,我们的结果为未来研究扁椭球体的行为提供了工具,特别是在致密悬浮液中的行为。

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