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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Tip-based hybrid simulation study of frictional properties of self-assembled monolayers: Effects of chain length, terminal group, scan direction, and scan velocity
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Tip-based hybrid simulation study of frictional properties of self-assembled monolayers: Effects of chain length, terminal group, scan direction, and scan velocity

机译:自组装单层摩擦特性的基于尖端的混合仿真研究:链长,端基,扫描方向和扫描速度的影响

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We report a study of the frictional properties of alkanethiol self-assembled monolayers (SAMs) on Au(111) at room temperature using hybrid molecular simulations at the atomic force/frictional force microscopy (AFM/FFM) experimental time scale. Various parameters influencing frictional properties were investigated, including chain length, terminal group, scan direction, and scan velocity. Simulation results show that frictional force decreases with an increase of chain length and that hydrophilic -OH-terminated SAMs have higher frictional force than hydrophobic -CH3-terminated SAMs. Frictional force as a function of normal load exhibits different behaviors for -CH3- and -OH-terminated SAMs. Simulation results further show friction anisotropy on SAMs at low and high temperatures. Frictional force is the smallest when scanned along the tilt direction, the largest when scanned against the tilt direction, and between when scanned perpendicular to the tilt direction. Finally, simulation results also show the dependence of friction on scan velocity. Friction exhibits a maximum for hydrophobic -CH3-terminated SAMs and decreases for hydrophilic -OH-terminated SAMs as scan velocity increases. It approaches a constant value at high scan velocities for both surfaces. [References: 54]
机译:我们报告在室温下使用原子力/摩擦力显微镜(AFM / FFM)实验时间尺度上的混合分子模拟对链烷硫醇自组装单分子膜(SAMs)在Au(111)上的摩擦性能的研究。研究了影响摩擦性能的各种参数,包括链长,端基,扫描方向和扫描速度。仿真结果表明,摩擦力随链长的增加而减小,亲水性-OH端基的SAMs的疏水力高于疏水性-CH3端基的SAMs。对于-CH3-和-OH端接的SAM,摩擦力作为正常载荷的函数表现出不同的行为。仿真结果进一步显示了低温和高温下SAM的摩擦各向异性。沿倾斜方向扫描时的摩擦力最小,相对于倾斜方向进行扫描时的摩擦力最大,而垂直于倾斜方向进行扫描时的摩擦力最大。最后,仿真结果还显示了摩擦对扫描速度的依赖性。随着扫描速度的增加,对于疏水性-CH 3封端的SAM摩擦表现出最大值,而对于亲水性-OH封端的SAMs摩擦表现出减小。在两个表面的高扫描速度下,它都接近恒定值。 [参考:54]

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