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Phase-dependent friction of nanoconfined water meniscus

机译:Phase-dependent nanoconfined水的摩擦弯月面

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摘要

A water meniscus naturally forms under ambient conditions at the point of contact between a nanoscale tip and an atomically flat substrate. Here, we study the effect of the phase state of this nanoscale meniscus-consisting of coexisting monolayer, bilayer and trilayer phase domains-on the frictional behavior during tip sliding by means of molecular dynamics simulations. While the meniscus experiences a domain-by-domain liquid-to-solid phase transition induced by lateral compression, we observe an evident transition in measured friction curves from continuous sliding to stick-slip and meanwhile a gradual increase in friction forces. Moreover, the stick-slip friction can be modulated by varying lattice orientation of the monolayer ice domain in the meniscus, choosing the sliding direction or applying in-plane strains to the substrate. Our results shed light on the rational design of high-performance micro- and nano-electromechanical systems relying on hydration lubrication.
机译:水弯月面环境下自然形成条件之间的接触点纳米级自动提示和一个平的底物。在这里,我们研究阶段的状态的影响这种纳米meniscus-consisting共存的单层、双层和trilayer阶段结构域在提示滑动摩擦行为分子动力学模拟的方法。domain-by-domain半月板的经历液体到固体相变引起的横向压缩,我们观察到一个明显在测量摩擦曲线过渡连续的滑动粘滑运动,与此同时逐步增加摩擦力。粘滑运动摩擦可以调制不同的晶格取向的单层冰域的半月板,选择滑动或运用平面应变方向衬底。高性能微和设计nano-electromechanical系统依赖水润滑。

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