...
首页> 外文期刊>Advances in condensed matter physics >Droplet Drying Patterns on Solid Substrates: From Hydrophilic to Superhydrophobic Contact to Levitating Drops
【24h】

Droplet Drying Patterns on Solid Substrates: From Hydrophilic to Superhydrophobic Contact to Levitating Drops

机译:固体基质上的液滴干燥方式:从亲水性到超疏水性接触到悬浮液滴

获取原文

摘要

This review is devoted to the simple process of drying a multicomponent droplet of a complex fluid which may contain salt or other inclusions. These processes provide a fascinating subject for study. The explanation of the rich variety of patterns formed is not only an academic challenge but also a problem of practical importance, as applications are growing in medical diagnosis and improvement of coating/printing technology. The fundamental scientific problem is the study of the mechanism of micro- and nanoparticle self-organization in open systems. The specific fundamental problems to be solved, related to this system, are the investigation of the mass transfer processes, the formation and evolution of phase fronts, and the identification of mechanisms of pattern formation. The drops of liquid containing dissolved substances and suspended particles are assumed to be drying on a horizontal solid insoluble smooth substrate. The chemical composition and macroscopic properties of the complex fluid, the concentration and nature of the salt, the surface energy of the substrate, and the interaction between the fluid and substrate which determines the wetting all affect the final morphology of the dried film. The range of our study encompasses the fully wetting case with zero contact angle between the fluid and substrate to the case where the drop is levitated in space, so there is no contact with a substrate and angle of contact can be considered as 180°.
机译:该评论致力于干燥可能含有盐或其他夹杂物的复杂流体的多组分液滴的简单干燥过程。这些过程提供了一个有趣的研究主题。随着在医学诊断和涂层/印刷技术的改进中的应用不断增长,对形成的丰富图案的解释不仅是学术上的挑战,而且是具有实际重要性的问题。根本的科学问题是对开放系统中微米和纳米粒子自组织机制的研究。与该系统有关的要解决的具体基本问题是对传质过程的研究,相前锋的形成和演化以及图案形成机理的识别。假定含有溶解物质和悬浮颗粒的液滴在水平的固体不溶性光滑基质上干燥。复杂流体的化学组成和宏观性质,盐的浓度和性质,基质的表面能以及决定润湿的流体与基质之间的相互作用都会影响干燥膜的最终形态。我们的研究范围包括流体与基材之间的零接触角与液滴在空间中悬浮的情况下完全润湿的情况,因此不与基材接触,并且接触角可以视为180°。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号