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Janus椭球体的几何和化学各向异性对流体-流体界面处Janus边界失配的影响。

Effect of Geometric and Chemical Anisotropy of Janus Ellipsoids on Janus Boundary Mismatch at the Fluid-Fluid Interface.

作者信息

Kang Dong Woo, Ko Woong, Lee Bomsock, Park Bum Jun

机构信息

Department of Chemical Engineering, Kyung Hee University, Yongin, Gyeonggi-do 17104, Korea.

出版信息

Materials (Basel). 2016 Aug 6;9(8):664. doi: 10.3390/ma9080664.

Abstract

We investigated the geometric and chemical factors of nonspherical Janus particles (i.e., Janus ellipsoids) with regard to the pinning and unpinning behaviors of the Janus boundary at the oil-water interface using attachment energy numerical calculations. The geometric factors were characterized by aspect ratio () and location of the Janus boundary () separating the polar and apolar regions of the particle. The chemical factor indicated the supplementary wettability () of the two sides of the particle with identical deviations of apolarity and polarity from neutral wetting. These two factors competed with each other to determine particle configurations at the interface. In general, the critical value of () required to preserve the pinned configuration was inversely proportional to the values of and . From the numerical calculations, the empirical relationship of the parameter values of Janus ellipsoids was found; that is, λ = Δ β c / Δ α ≈ 0.61 A R - 1.61 . Particularly for the Janus ellipsoids with > 1, the value is consistent with the boundary between the tilted only and the tilted equilibrium/upright metastable region in their configuration phase diagram. We believe that this work performed at the single particle level offers a fundamental understanding of the manipulation of interparticle interactions and control of the rheological properties of particle-laden interfaces when particles are used as solid surfactants.

摘要

我们使用附着能数值计算方法,研究了非球形Janus颗粒(即Janus椭球体)在油水界面处的Janus边界的钉扎和去钉扎行为的几何和化学因素。几何因素由纵横比()和分隔颗粒极性和非极性区域的Janus边界位置()来表征。化学因素表示颗粒两侧具有与中性润湿相同的非极性和极性偏差的补充润湿性()。这两个因素相互竞争,以确定界面处的颗粒构型。一般来说,保持钉扎构型所需的()临界值与和的值成反比。通过数值计算,发现了Janus椭球体参数值的经验关系;即,λ = Δβc / Δα ≈ 0.61AR - 1.61。特别是对于纵横比大于1的Janus椭球体,值与它们构型相图中仅倾斜和倾斜平衡/直立亚稳区域之间的边界一致。我们相信,这项在单颗粒水平上进行的工作,为理解当颗粒用作固体表面活性剂时颗粒间相互作用的操纵以及含颗粒界面流变性质的控制提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bf5/5509275/d1c366604ad2/materials-09-00664-g001.jpg

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