疏水叶片上去离子水滴蒸发动力学研究

IF 3.9 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Langmuir Pub Date : 2025-01-13 DOI:10.1021/acs.langmuir.4c04207
Zhuorui Li, Yali Guo, Denghui Zhao, Chengtao Yan, Panagiotis E. Theodorakis, Bin Liu
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引用次数: 0

摘要

基于仿生表面设计的自清洁应用需要深入了解天然生物表面上固定液滴的独特而复杂的润湿和蒸发过程。为此,疏水性竹子和kalanche blossfeldiana叶子是自清洁应用的绝佳候选者,但各种特性,如蒸发过程中的传热和传质过程,仍然未知。本文研究了粗糙度在2.8 ~ 3.4 μm范围内的竹叶和柠条叶片上的接触角、半径和传热传质过程的动力学特性。特别是在竹叶上观察到“棍跳”现象,进一步用吉布斯自由能对其进行分析,表明粗糙度越大,水滴越容易跳跃。利用Wenzel润湿模型,建立了竹叶表面粗糙结构参数与系统本征能垒之间的函数关系,并对液滴的蒸发动力学进行了分析。我们期望这项研究为理解疏水仿生材料表面液滴的行为提供一个框架,这可能会导致自清洁仿生表面的合理设计。
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Evaporation Dynamics of Deionized Water Droplets on Hydrophobic Leaves
Self-cleaning applications based on bionic surface designs requires an in-depth understanding of unique and complex wetting and evaporation processes of sessile droplets on natural biosurfaces. To this end, hydrophobic bamboo and Kalanchoe blossfeldiana leaves are excellent candidates for self-cleaning applications, but various properties, such as the heat and mass transfer processes during evaporation, remain unknown. Here, the dynamics of contact angle, radius, and heat and mass transfer during evaporation of sessile droplets on bamboo and Kalanchoe blossfeldiana leaves with roughness in the range 2.8–3.4 μm are thoroughly investigated. In particular, the “stick–jump” phenomenon is observed on bamboo leaves, which was further analyzed in terms of Gibbs free energy and indicates that a larger roughness would also render more likely the jump of the drops. Moreover, by means of the Wenzel wetting model, the functional relation between the rough structure parameters of the bamboo leaf surface and the system intrinsic energy barrier was established, and the evaporation kinetics of droplets was elucidated. We anticipate that this study offers a framework for understanding the behavior of droplets on the surface of hydrophobic biomimetic materials, which may lead to the rational design of self-cleaning bionic-type surfaces.
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来源期刊
Langmuir
Langmuir 化学-材料科学:综合
CiteScore
6.50
自引率
10.30%
发文量
1464
审稿时长
2.1 months
期刊介绍: Langmuir is an interdisciplinary journal publishing articles in the following subject categories: Colloids: surfactants and self-assembly, dispersions, emulsions, foams Interfaces: adsorption, reactions, films, forces Biological Interfaces: biocolloids, biomolecular and biomimetic materials Materials: nano- and mesostructured materials, polymers, gels, liquid crystals Electrochemistry: interfacial charge transfer, charge transport, electrocatalysis, electrokinetic phenomena, bioelectrochemistry Devices and Applications: sensors, fluidics, patterning, catalysis, photonic crystals However, when high-impact, original work is submitted that does not fit within the above categories, decisions to accept or decline such papers will be based on one criteria: What Would Irving Do? Langmuir ranks #2 in citations out of 136 journals in the category of Physical Chemistry with 113,157 total citations. The journal received an Impact Factor of 4.384*. This journal is also indexed in the categories of Materials Science (ranked #1) and Multidisciplinary Chemistry (ranked #5).
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