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Dynamic wetting: status and prospective of single particle based experiments and simulations

机译:动态润湿:基于单颗粒的实验和模拟的现状与展望

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The fundamental molecular and microscopic properties of materials leading to dynamic wetting and relaxation effects have been subject to numerous studies in the past decades, but a thorough understanding is still missing. While most previous experiments utilize fluids deposited on planar substrates, this article focuses on an attractive alternative based on single colloidal particles: colloidal particles have the ability to strongly interact with fluid-fluid interfaces and the behavior strongly depends on the surface properties of the particles and the fluids used. Recent progress in the manipulation and synthesis of colloidal particles with well-defined surface properties and shapes makes them ideal candidates to probe the fundamental surface properties leading to dynamic wetting effects. In this paper we review and discuss the status of experimental and numerical techniques to characterize the dynamic wetting of single particles at fluid-fluid interfaces, with the aim to assist scientists and engineers in the design of new experimental techniques and particle-based (bio) analytical tools. Research Paper
机译:在过去的几十年中,导致动态润湿和松弛效果的材料的基本分子和微观性质受到了众多研究的关注,但是仍然缺乏透彻的了解。虽然大多数先前的实验都是利用沉积在平面基板上的流体进行的,但本文着重介绍了基于单个胶体颗粒的有吸引力的替代方法:胶体颗粒具有与流体-流体界面强烈相互作用的能力,其行为在很大程度上取决于颗粒的表面性质和使用的液体。具有明确定义的表面性质和形状的胶体颗粒的操作和合成方面的最新进展,使其成为探测导致动态润湿效果的基本表面性质的理想候选者。在本文中,我们回顾并讨论了表征流体-流体界面上单个颗粒动态润湿的实验和数值技术的现状,旨在协助科学家和工程师设计新的实验技术和基于颗粒的(生物)分析工具。研究论文

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