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基底润湿性引导的Janus颗粒定向自组装

Substrate wettability guided oriented self assembly of Janus particles.

作者信息

Banik Meneka, Sett Shaili, Bakli Chirodeep, Raychaudhuri Arup Kumar, Chakraborty Suman, Mukherjee Rabibrata

机构信息

Instability and Soft Patterning Laboratory, Department of Chemical Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

S. N. Bose National Centre for Basic Sciences, J D Block, Sector III, Salt Lake City, Kolkata, 700106, India.

出版信息

Sci Rep. 2021 Jan 13;11(1):1182. doi: 10.1038/s41598-020-80760-w.

Abstract

Self-assembly of Janus particles with spatial inhomogeneous properties is of fundamental importance in diverse areas of sciences and has been extensively observed as a favorably functionalized fluidic interface or in a dilute solution. Interestingly, the unique and non-trivial role of surface wettability on oriented self-assembly of Janus particles has remained largely unexplored. Here, the exclusive role of substrate wettability in directing the orientation of amphiphilic metal-polymer Bifacial spherical Janus particles, obtained by topo-selective metal deposition on colloidal Polymestyere (PS) particles, is explored by drop casting a dilute dispersion of the Janus colloids. While all particles orient with their polymeric (hydrophobic) and metallic (hydrophilic) sides facing upwards on hydrophilic and hydrophobic substrates respectively, they exhibit random orientation on a neutral substrate. The substrate wettability guided orientation of the Janus particles is captured using molecular dynamic simulation, which highlights that the arrangement of water molecules and their local densities near the substrate guide the specific orientation. Finally, it is shown that by spin coating it becomes possible to create a hexagonal close-packed array of the Janus colloids with specific orientation on differential wettability substrates. The results reported here open up new possibilities of substrate-wettability driven functional coatings of Janus particles, which has hitherto remained unexplored.

摘要

具有空间不均匀性质的Janus粒子的自组装在不同科学领域具有至关重要的意义,并且已在多种情况下被广泛观察到,如在有利功能化的流体界面或稀溶液中。有趣的是,表面润湿性对Janus粒子定向自组装的独特且重要的作用在很大程度上仍未得到探索。在此,通过滴铸Janus胶体的稀分散液,研究了基底润湿性在引导两亲性金属 - 聚合物双面球形Janus粒子取向方面的独特作用,这些粒子是通过在胶体聚甲基苯乙烯(PS)粒子上进行拓扑选择性金属沉积获得的。虽然所有粒子在亲水和疏水基底上分别以其聚合物(疏水)面和金属(亲水)面朝上取向,但它们在中性基底上呈现随机取向。使用分子动力学模拟捕捉了基底润湿性引导Janus粒子的取向,这突出表明基底附近水分子的排列及其局部密度引导了特定的取向。最后,结果表明通过旋涂可以在具有不同润湿性的基底上创建具有特定取向的Janus胶体的六方密堆积阵列。此处报道的结果为Janus粒子的基底润湿性驱动的功能涂层开辟了新的可能性,而这一点迄今为止尚未得到探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a58/7807062/594917149dad/41598_2020_80760_Fig1_HTML.jpg

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