Added: Amberly Glasser - Date: 23.01.2022 18:22 - Views: 22252 - Clicks: 9396
These metrics are regularly updated to reflect usage leading up to the last few days. Citations are the of other articles citing this article, calculated by Crossref and updated daily.
Find more information about Crossref citation counts. The Altmetric Attention Score is a quantitative measure of the attention that a research article has received online. Clicking on the donut icon will load a at altmetric. Find more information on the Altmetric Attention Score and how the score is calculated. Wettability of liquid metal gallium is of vital ificance in the field of modern industries, such as direct writing printing and microfluidics.
A liquid interface is a recently developed and promising approach to regulate wettability but has not been well applied in liquid metals yet. This study focuses on the wetting performance of gallium droplets on organic liquid films. The show that the organic liquid film could change the wetting state of the gallium droplet. Based on the solid substrate roughness and surface tension of the organic liquid, we could estimate whether the gallium droplet is in a slippery Wenzel or a Cassie state.
Subsequently, we apply the thermodynamic stable model on different organic liquid films by spreading parameters to predict a priori whether an arbitrary combination of solid roughness and organic liquid is suitable for deing lubricant-infused surfaces LIS used in gallium droplets.
This paper would provide a better understanding of wettability of liquid metal on an organic liquid surface. Tabulated surface energy components, interface energy theoretical calculation values or experimental result values for 10 organic liquids, the contact angle of the water on highly volatile organic liquids, and the details of the sessile drop method and the pendant drop method PDF. Noncloaking condition AVI. Cloaking condition AVI. Such files may be downloaded by article for research use if there is a public use linked to the relevant article, that may permit other uses.
More by Erli Ni. More by Tao Li. More by Ying Ruan. More by Yingjie Ma. More by Yifei Wang. More by Yanyan Jiang. More by Hui Li. Cite this: Langmuir3731— Article Views Altmetric. Citations 1. Supporting Information.
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