Effect of dispersed particles on surface tension, wetting, and spreading of nanofluids

IF 7.9 2区 化学 Q1 CHEMISTRY, PHYSICAL
Alexandre M. Emelyanenko, Ludmila B. Boinovich
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引用次数: 0

Abstract

The dispersion of small particles provides an inexpensive and convenient way to significantly improve various functional properties of the base fluid. Nanodispersions can be used to solve various industrial and technical problems, such as increasing the efficiency of heat generating systems, cooling electrical equipment, water desalination, control of thermal regimes of chemical processes and electronic devices, enhancing oil recovery, and so on. This review targets to highlight the recently published results that are of general importance for understanding the processes occurring during wetting and spreading of nanofluids over various surfaces, as well as the mechanisms that determine these processes.

Abstract Image

分散颗粒对纳米流体表面张力、润湿和扩散的影响
小颗粒的分散提供了一种廉价和方便的方法来显著改善基液的各种功能特性。纳米分散体可用于解决各种工业和技术问题,例如提高发热系统的效率、冷却电气设备、海水淡化、化学过程和电子设备的热状态控制、提高石油采收率等等。这篇综述的目标是强调最近发表的结果,这些结果对于理解纳米流体在各种表面上润湿和扩散过程以及决定这些过程的机制具有普遍的重要性。
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来源期刊
CiteScore
16.50
自引率
1.10%
发文量
74
审稿时长
11.3 weeks
期刊介绍: Current Opinion in Colloid and Interface Science (COCIS) is an international journal that focuses on the molecular and nanoscopic aspects of colloidal systems and interfaces in various scientific and technological fields. These include materials science, biologically-relevant systems, energy and environmental technologies, and industrial applications. Unlike primary journals, COCIS primarily serves as a guide for researchers, helping them navigate through the vast landscape of recently published literature. It critically analyzes the state of the art, identifies bottlenecks and unsolved issues, and proposes future developments. Moreover, COCIS emphasizes certain areas and papers that are considered particularly interesting and significant by the Editors and Section Editors. Its goal is to provide valuable insights and updates to the research community in these specialized areas.
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