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采用超润湿性的上下混合策略制备图案化胶体组装。

Hybrid Top-Down/Bottom-Up Strategy Using Superwettability for the Fabrication of Patterned Colloidal Assembly.

机构信息

Laboratory for New Fiber Materials and Modern Textile, Growing Base for State Key Laboratory, Qingdao University , Qingdao 266071, China.

The Laboratory of Bio-Inspired Smart Interface Sciences, Technical Institute of Physics and Chemistry, Chinese Academy of Science , Beijing 100190, China.

出版信息

ACS Appl Mater Interfaces. 2016 Feb;8(7):4985-93. doi: 10.1021/acsami.5b11945. Epub 2016 Feb 12.

Abstract

Superwettability of substrates has had a profound influence on the production of novel and advanced colloidal assemblies in recent decades owing to its effect on the spreading area, evaporation rate, and the resultant assembly structure. In this paper, we investigated in detail the influence of the superwettability of a transfer/template substrate on the colloidal assembly from a hybrid top-down/bottom-up strategy. By taking advantage of a superhydrophilic flat transfer substrate and a superhydrophobic groove-structured silicon template, the patterned colloidal microsphere assembly was formed including linear and mesh-, cyclic-, and multistopband assembly arrays of microspheres, and the optic-waveguide of a circular colloidal structure was demonstrated. We believed this liquid top-down/bottom-up strategy would open an efficient avenue for assembling/integrating microspheres building blocks into device applications in a low-cost manner.

摘要

由于基底的超润湿性对铺展面积、蒸发速率以及由此产生的组装结构有深远影响,在最近几十年,它对新型先进胶体组装体的产生有着巨大的影响。在本文中,我们详细研究了从混合自上而下/自下而上的策略出发,转移/模板基底的超润湿性对胶体组装体的影响。通过利用超亲水的平面转移基底和超疏水的槽型硅模板,形成了包括线性和网格、环状和多停带的微球组装阵列,以及圆形胶体结构的光导波,我们相信这种自上而下/自下而上的液态策略将为以低成本的方式将微球积木组装/集成到器件应用中提供一条有效的途径。

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