表面活性剂增强液滴在疏水表面沉积的研究进展。

Advances in colloid and interface science Pub Date : 2025-02-01 Epub Date: 2024-12-03 DOI:10.1016/j.cis.2024.103374
Bing Xiang, Kefeng Fang, Runci Song, Jie Chen, Xin Feng, Guilong Wang, Xiaoxia Duan, Chao Yang
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引用次数: 0

摘要

在自然界和工业中,从下雨到农业喷洒和喷墨印刷,液滴都会撞击固体表面。表面活性剂是影响液滴撞击行为的重要因素。深入了解表面活性剂对液滴碰撞动力学的影响和机理,可以提高工业过程中液滴的精确控制。在这里,最近的见解表面活性剂增强液滴沉积在疏水表面进行了回顾。首先,综述了表面活性剂增强液滴沉积的机理。其次,探讨了影响液滴沉积的因素,如分子扩散、表面活性剂的对流扩散、疏水表面的特性以及负载表面活性剂的液滴与疏水表面之间的相互作用。此外,综述了表面活性剂对液滴扩散和收缩过程、最大扩散因子和振荡动力学的影响。最后,总结了表面活性剂在喷墨打印、过冷表面、农业喷雾等不同领域的典型应用,以及未来研究面临的挑战和展望,为后续研究提供建议。
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Advancement in surfactant-enhanced droplet deposition on the hydrophobic surfaces.

Droplets impacting solid surfaces are encountered in nature and industry, from rain to agricultural spraying and inkjet printing. Surfactants are an important factor that affects the impact behavior of droplets. An in-depth knowledge of the influence and mechanisms of surfactants on the dynamics of droplet impact can enhance the precise control of droplets in industrial processes. Herein, recent insights into surfactant-enhanced droplet deposition on hydrophobic surfaces are reviewed. First, the mechanisms of surfactant-enhanced droplet deposition are summarized. Second, the factors that influence droplet deposition, such as molecular diffusion, convective diffusion of surfactants, characteristics of hydrophobic surfaces, and interaction between the surfactant-laden droplets and the hydrophobic surfaces, are explored. Additionally, the influences of surfactants on the spreading and retraction processes of impacting droplets, maximum spreading factor, and oscillation dynamics are reviewed. Finally, typical applications of surfactants in different fields, such as inkjet printing, supercooled surface, and agricultural spray, are summarized, along with challenges and prospects in future research, to provide suggestions for subsequent studies.

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