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液滴的毛细组装。

Capillary Assembly of Liquid Particles.

机构信息

Molecular Design Institute and Department of Chemistry, New York University, New York, NY, 10003, USA.

出版信息

Small. 2020 Apr;16(16):e1907523. doi: 10.1002/smll.201907523. Epub 2020 Mar 19.

DOI:10.1002/smll.201907523
PMID:32191379
Abstract

Capillary assembly is a versatile method for depositing colloidal particles within templates, resulting in nano/microarrays and colloidal superstructures for optical, plasmonic, and sensory applications. Liquid particles (LPs), comprised of oligomerized 3-(trimethoxysilyl)propyl methacrylate, are herein shown to deposit into patterned cavities via capillary assembly. In contrast to solid colloids, LPs coalesce upon solvent evaporation and assume the geometry of the template. Incorporating small molecules such as dyes followed by LP solidification generates fluorescent polymer microarrays of any geometry. The LP size is inversely proportional to the quantity of deposited material and the convexity of the final polymer array. Cavity filling can be tuned by increasing the assembly temperature. Extraction of the polymerized regions produces solidified particles with faceted shapes including square prisms, trapezoids, and ellipsoids with sizes up to 14 µm that retain the shape of the cavity in which they are initially held. LP deposition thus presents a highly controllable fabrication scheme for geometrically diverse polymer microarrays and anisotropic colloids of any conceivable polygonal shape due to space filling of the template. The extension of capillary assembly to LPs that can be doped with small molecule dyes and analytes invaluably expands the synthetic toolbox for top-down, scalable, hierarchically engineered materials.

摘要

毛细组装是一种在模板内沉积胶体颗粒的通用方法,可用于制备用于光学、等离子体和传感应用的纳米/微阵列和胶体超结构。本文展示了由齐聚的 3-(三甲氧基硅基)丙基甲基丙烯酸酯组成的液体颗粒 (LPs) 通过毛细组装沉积到图案化腔中。与固体胶体不同,LPs 在溶剂蒸发时会聚合并采用模板的几何形状。随后加入小分子染料并使 LP 固化,即可生成任何几何形状的荧光聚合物微阵列。LP 的尺寸与沉积材料的量和最终聚合物阵列的凸度成反比。通过增加组装温度可以调节腔室填充。聚合区域的提取产生具有多面体形貌的固化颗粒,包括方形棱柱、梯形和椭圆体,尺寸可达 14 µm,保留其初始腔室的形状。因此,由于模板的空间填充,LP 沉积为具有各种不同几何形状的聚合物微阵列和各向异性胶体提供了一种高度可控的制造方案,这些胶体可以掺杂小分子染料和分析物。毛细组装方法扩展到可以掺杂小分子染料和分析物的 LPs,极大地扩展了自上而下、可扩展、分层设计材料的合成工具包。

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