节点文献

电润湿作用下水在石墨烯表面流动的边界滑移及界面摩擦

Boundary slip and interfacial friction properties of confined-water flow on graphene under electrowetting

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 张忠强叶宏飞程广贵郑勇刚丁建宁凌智勇

【Author】 ZHANG Zhong-qiang;YE Hong-fei;CHENG Guang-gui;ZHENG Yong-gang;DING Jian-ning;LING Zhi-yong;Micro/Nano Science and Technology Center,Jiangsu University;Jiangsu Key Laboratory of Solar Materials;State Key Laboratory of Structural Analysis for Industrial Equipment, Department of Engineering Mechanics,Dalian University of Technology;

【机构】 江苏大学微纳米科学技术中心江苏省太阳能电池材料与技术重点实验室大连理工大学工业装备结构分析国家重点实验室

【摘要】 采用分子动力学方法结合流体边界滑移理论对电润湿作用下水在石墨烯表面流动的边界滑移及摩擦特性进行数值模拟和理论分析。采用石墨烯-水Couette剪切模型,获取电润湿作用下和不带电情况下的剪切速率轮廓、石墨烯表面的剪切应力、边界滑移速率、滑移长度及界面摩擦系数,着重研究界面滑移长度和界面摩擦系数与剪切应变率之间的变化。结果表明:当剪切应变率超过临界剪切应变率时,滑移长度迅速增加,且电润湿作用下的临界剪切应变率明显高于不带电情况下的临界剪切应变率,而界面摩擦系数随着剪切应变率的增大而减小;石墨烯电润湿作用明显增强了石墨烯-水界面的摩擦。无论在电润湿作用下还是不带电情况下,石墨烯-水Couette模型中水的黏性系数与剪切应变率无关。

【Abstract】 The boundary slip and interfacial friction properties of confined-water flow on two parallel single-layer graphene sheets w ith a separation of 6 nm under electrow etting conditions w ere investigated by molecular dynamics simulation and boundary slip theory.For both electrow etted and uncharged graphenes,the flow velocity profiles perpendicular to the flow direction,shear stress, boundary slip velocity,slip length and interfacial friction coefficient w ere obtained w ith a graphene-w ater Couette flow model.Results show that the slip length increases abruptly w hen the shear rate is above a critical value.The critical shear rate in the electrow etted graphenes is obviously larger than that in uncharged ones.The interfacial friction coefficient betw een graphene and w ater decreases w ith the shear rate and is increased by electrow etting the graphenes.The w ater viscosity is independent of the shear rate in both eletrow etted and uncharged graphenes.

【关键词】 石墨烯电润湿边界滑移界面摩擦
【Key words】 GrapheneElectrowettingWaterBoundary slipInterfacial friction
【基金】 国家自然科学基金(11102074,51005103,11302037,11272003);江苏省自然科学基金(BK2011463);中国博士后基金(2011M501169)及特别资助(2013T60503);江苏大学高级专业人才启动基金(11JDG024)~~
  • 【文献出处】 新型炭材料 ,New Carbon Materials , 编辑部邮箱 ,2013年06期
  • 【分类号】O613.71
  • 【被引频次】5
  • 【下载频次】392
节点文献中: 

本文链接的文献网络图示:

本文的引文网络