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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Temperature-induced switchable interfacial interactions on slippery surfaces for controllable liquid manipulation
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Temperature-induced switchable interfacial interactions on slippery surfaces for controllable liquid manipulation

机译:用于可控液体操作的滑动表面上的温度诱导的可切换界面相互作用

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摘要

Recently, responsive slippery surfaces with controllable liquid droplet sliding have attracted interest due to their promise for applications in liquid transportation, microfluidics, microreactors, biomedicine and beyond. Controllable liquid sliding is closely related to regulatable interfacial interactions. However, investigations on the interfacial interactions that occur as a droplet slides on a responsive slippery surface are lacking. Herein, we directly detect the interfacial friction forces and adhesion forces between a liquid droplet and a temperature-responsive slippery surface by using atomic force microscopy and analyze the changes of intermolecular hydrogen bonds between droplet and lubricant by using molecular dynamics simulation. The results show that (i) the liquid sliding behavior on the slippery surface can be smartly controlled by increasing/decreasing the temperature; (ii) the interfacial friction forces and adhesion forces reversibly switch at high and low temperatures, which is the reason for controllable liquid sliding; and (iii) the nature of the switchable interfacial forces and controllable liquid sliding on the temperature-responsive slippery surface is attributed to changes in intermolecular interactions. This work would provide a way to understand the nature of controllable liquid motion on smart-responsive slippery surfaces in terms of intermolecular interactions between a droplet and the surface.
机译:最近,具有可控液滴滑动的响应式光滑表面引起了利息,因为它们在液体运输,微流体,微原料,生物医学和超越中的应用中的应用。可控液体滑动与可调节的界面相互作用密切相关。然而,缺乏对作为液滴滑动的界面相互作用的研究缺乏。这里,通过使用原子力显微镜通过使用分子动力学模拟,通过使用原子力显微镜直接检测液滴和温度响应光表面之间的界面摩擦力和粘附力。通过使用分子动力学模拟来分析液滴和润滑剂之间的分子间氢键的变化。结果表明,(i)通过增加/降低温度,可以巧妙地控制光滑表面上的液体滑动行为; (ii)界面摩擦力和粘合力可逆地切换在高温和低温下,这是可控液体滑动的原因; (iii)在温度响应光表面上的可切换界面力和可控液体滑动的性质归因于分子间相互作用的变化。这项工作将提供一种方法来了解在液滴和表面之间的分子间相互作用方面了解可控液体运动的性质。

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    Beihang Univ Beijing Key Lab Bioinspired Energy Mat &

    Devices Key Lab Bioinspired Smart Interfacial Sci &

    Techn Sch Chem Minist Educ Beijing 100191 Peoples R China;

    China Univ Petr State Key Lab Heavy Oil Proc Beijing 102249 Peoples R China;

    Beihang Univ Beijing Key Lab Bioinspired Energy Mat &

    Devices Key Lab Bioinspired Smart Interfacial Sci &

    Techn Sch Chem Minist Educ Beijing 100191 Peoples R China;

    Beihang Univ Beijing Key Lab Bioinspired Energy Mat &

    Devices Key Lab Bioinspired Smart Interfacial Sci &

    Techn Sch Chem Minist Educ Beijing 100191 Peoples R China;

    Beihang Univ Beijing Key Lab Bioinspired Energy Mat &

    Devices Key Lab Bioinspired Smart Interfacial Sci &

    Techn Sch Chem Minist Educ Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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