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各向异性颗粒在圆柱形流体-流体界面处的堆积

Capillary Assembly of Anisotropic Particles at Cylindrical Fluid-Fluid Interfaces.

机构信息

Department of Physics & Mathematics, University of Hull, Hull HU6 7RX, U.K.

Department of Chemistry & Biochemistry, University of Hull, Hull HU6 7RX, U.K.

出版信息

Langmuir. 2023 May 2;39(17):6006-6017. doi: 10.1021/acs.langmuir.3c00016. Epub 2023 Apr 18.

Abstract

The unique behavior of colloids at liquid interfaces provides exciting opportunities for engineering the assembly of colloidal particles into functional materials. The deformable nature of fluid-fluid interfaces means that we can use the interfacial curvature, in addition to particle properties, to direct self-assembly. To this end, we use a finite element method (Surface Evolver) to study the self-assembly of rod-shaped particles adsorbed at a simple curved fluid-fluid interface formed by a sessile liquid drop with cylindrical geometry. Specifically, we study the self-assembly of single and multiple rods as a function of drop curvature and particle properties such as shape (ellipsoid, cylinder, and spherocylinder), contact angle, aspect ratio, and chemical heterogeneity (homogeneous and triblock patchy). We find that the curved interface allows us to effectively control the orientation of the rods, allowing us to achieve parallel, perpendicular, or novel obliquely orientations with respect to the cylindrical drop. In addition, by tuning particle properties to achieve parallel alignment of the rods, we show that the cylindrical drop geometry favors tip-to-tip assembly of the rods, not just for cylinders, but also for ellipsoids and triblock patchy rods. Finally, for triblock patchy rods with larger contact line undulations, we can achieve strong spatial confinement of the rods transverse to the cylindrical drop due to the capillary repulsion between the contact line undulations of the particle and the pinned contact lines of the sessile drop. Our capillary assembly method allows us to manipulate the configuration of single and multiple rod-like particles and therefore offers a facile strategy for organizing such particles into useful functional materials.

摘要

胶体在液-液界面的独特行为为工程胶体粒子组装成功能材料提供了令人兴奋的机会。流体-流体界面的可变形性质意味着我们可以利用界面曲率,除了粒子特性之外,还可以指导自组装。为此,我们使用有限元方法(Surface Evolver)研究了在具有圆柱几何形状的液滴形成的简单弯曲液-液界面上吸附的棒状粒子的自组装。具体来说,我们研究了单根和多根棒作为液滴曲率和粒子特性(如形状(椭球、圆柱和球柱)、接触角、纵横比和化学不均匀性(均匀和三嵌段胶束)的函数的自组装。我们发现,弯曲界面使我们能够有效地控制棒的取向,使我们能够实现平行、垂直或新颖的斜向取向,相对于圆柱液滴。此外,通过调整粒子特性来实现棒的平行排列,我们表明圆柱液滴几何形状有利于棒的尖端到尖端组装,不仅适用于圆柱,也适用于椭球和三嵌段胶束棒。最后,对于具有较大接触线波动的三嵌段胶束棒,由于粒子接触线波动和液滴固定接触线之间的毛细斥力,我们可以在垂直于圆柱液滴的方向上对棒进行强烈的空间限制。我们的毛细组装方法允许我们操纵单根和多根棒状粒子的配置,因此为将这些粒子组织成有用的功能材料提供了一种简便的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e33/10157885/1df29d04b4f7/la3c00016_0002.jpg

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