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Janus 粒子帽层厚度的局部测量。

Local Measurement of Janus Particle Cap Thickness.

机构信息

Chemical and Biomedical Engineering , Cleveland State University , Cleveland , Ohio 44115 , United States.

Materials for Opto/Electronics Research and Education (MORE) Center , Case Western Reserve University , Cleveland , Ohio 44106 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 19;10(37):30925-30929. doi: 10.1021/acsami.8b11011. Epub 2018 Sep 5.

Abstract

Janus particles have anisotropy in surface chemistry or composition that will effect dynamics and interactions with neighboring surfaces. One specific type of Janus particle is that consisting of a native micrometer-scale particle with a cap of gold, platinum, or another metal deposited with a typical thicknesses of ∼10 nm. A key characteristic of metal-capped Janus particles prepared with glancing angle deposition is the cap thickness. The nominal thickness is usually assumed to be uniform across the cap for modeling or interpretation of data, but the vapor deposition fabrication process likely does not produce such a cap because of the particle's curvature. These nonuniformities in the cap thickness may have a profound impact on Janus particle dynamics at equilibrium and in response to external fields. Herein, we summarize an experimental technique that utilizes focused ion beam slicing, image analysis, and results for the direct and local measure of cap thickness for 5 μm polystyrene spheres with a gold cap of nominal thicknesses of 10 or 20 nm. We found the cap varied in thickness continuously along the perimeter of the particle and also that the deposition rate, varying between 0.5 and 2.0 Å/s, did not significantly alter the way in which the thickness varied. These data support the hypothesis that cap thickness of a Janus sphere will vary across the gold surface contour, while demonstrating a feasible route for direct measurement of Janus particle cap thickness.

摘要

Janus 粒子在表面化学或组成上具有各向异性,这将影响其与相邻表面的动力学和相互作用。Janus 粒子的一种特殊类型是由具有金、铂或另一种金属帽的天然微米级粒子组成,金属帽的典型厚度约为 10nm。使用掠角沉积制备的金属覆盖 Janus 粒子的一个关键特征是帽厚度。在建模或解释数据时,通常假设名义厚度在整个帽上是均匀的,但由于粒子的曲率,蒸气沉积制造过程不太可能产生这样的帽。帽厚度的这种不均匀性可能对平衡状态和对外场响应的 Janus 粒子动力学产生深远影响。在此,我们总结了一种实验技术,该技术利用聚焦离子束切片、图像分析以及直接和局部测量具有名义厚度为 10 或 20nm 的金帽的 5μm 聚苯乙烯球的帽厚度的结果。我们发现帽沿粒子的周边连续变化厚度,并且沉积速率在 0.5 和 2.0Å/s 之间变化不会显著改变厚度变化的方式。这些数据支持了 Janus 球体的帽厚度将沿金表面轮廓变化的假设,同时证明了直接测量 Janus 粒子帽厚度的可行途径。

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