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Flow-resistance analysis of nano-confined fluids inspired from liquid nano-lubrication:A review 被引量:3

Flow-resistance analysis of nano-confined fluids inspired from liquid nano-lubrication: A review
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摘要 How to reduce flow resistance of nano-confined fluids to achieve a high flux is a new challenge for modern chemical engineering applications, such as membrane separation and nanofluidic devices. Traditional models are inapplicable to explain the significant differences in the flow resistance of different liquid–solid systems.On the other hand, friction reduction in liquid nano-lubrication has received considerable attention during the past decades. Both fields are exposed to a common scientific issue regarding friction reduction during liquid–solid relative motion at nanoscale. A promising approach to control the flow resistance of nano-confined fluids is to reference the factors affecting liquid nano-lubrication. In this review, two concepts of the friction coefficient derived from fluid flow and tribology were discussed to reveal their intrinsic relations. Recent progress on low or ultra-low friction coefficients in liquid nano-lubrication was summarized based on two situations. Finally, a new strategy was introduced to study the friction coefficient based on analyzing the intermolecular interactions through an atomic force microscope(AFM), which is a cutting-point to build a new model to study flowresistance at nanoscale. How to reduce flow resistance of nano-confined fluids to achieve a high flux is a new challenge for modern chemical engineering applications, such as membrane separation and nanofluidic devices. Traditional models are inapplicable to explain the significant differences in the flow resistance of different liquid-solid systems. On the other hand, friction reduction in liquid nano-lubrication has received considerable attention during the past decades. Both fields are exposed to a common scientific issue regarding friction reduction during liquid-solid relative motion at nanoscale. A promising approach to control the flow resistance of nano-confined fluids is to reference the factors affecting liquid nano-lubrication. In this review, two concepts of the friction coefficient derived from fluid flow and tribology were discussed to reveal their intrinsic relations. Recent progress on low or ultra-low friction coefficients in liquid nano-lubrication was summarized based on two situations. Finally, a new strategy was introduced to study the friction coefficient based on analyzing the intermolecular interactions through an atomic force microscope (AFM), which is a cutting-point to build a new model to study flow-resistance at nanoscale.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第11期1552-1562,共11页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(21176112,21576130,21490584,51005123) Qing Lan Project,the State Key Laboratory of Materials-Oriented Chemical Engineering(KL15-03) Specialized Research Fund for the Doctoral Program of Higher Education(20133221110001) the Natural Science Foundation of Jiangsu Province(BK20130062)
关键词 FLOW resistance MEMBRANE SEPARATION LIQUID nano-lubrication Modellntermolecular INTERACTIONS AFM Flow resistance Membrane separation Liquid nano-lubrication Model Intermolecular interactions AFM
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