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Probing droplets on superhydrophobic surfaces by synchrotron radiation scattering techniques

机译:通过同步辐射散射技术探测超疏水表面上的液滴

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摘要

Droplets on artificially structured superhydrophobic surfaces represent quasi contact-free sample environments which can be probed by X-ray microbeams and nanobeams in the absence of obstructing walls. This review will discuss basic surface wettability concepts and introduce the technology of structuring surfaces. Quasi contact-free droplets are compared with contact-free droplets; processes related to deposition and evaporation on solid surfaces are discussed. Droplet coalescence based on the electrowetting effect allows the probing of short-time mixing and reaction processes. The review will show for several materials of biological interest that structural processes related to conformational changes, nucleation and assembly during droplet evaporation can be spatially and temporally resolved by raster-scan diffraction techniques. Orientational ordering of anisotropic materials deposited during solidification at pinning sites facilitates the interpretation of structural data.
机译:人工结构化的超疏水表面上的液滴代表准无接触的样品环境,可以在没有障碍壁的情况下通过X射线微束和纳米束进行探测。本文将讨论基本的表面润湿性概念,并介绍构造表面的技术。将准无接触液滴与无接触液滴进行比较;讨论了与固体表面沉积和蒸发有关的过程。基于电润湿效应的液滴聚结可以探测短时间的混合和反应过程。审查将显示一些具有生物学意义的材料,可以通过光栅扫描衍射技术在空间和时间上解决与液滴蒸发过程中的构象变化,成核和组装有关的结构过程。凝固过程中在钉扎点处沉积的各向异性材料的取向排序有利于解释结构数据。

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