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Molecular simulation study of nanoscale friction between alkyl monolayers on Si(111) immersed in solvents

机译:浸渍在溶剂中的Si(111)上烷基单层之间纳米级摩擦的分子模拟研究

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Nonequilibrium molecular dynamics simulations were performed to study nanoscale friction between two Si(111) surfaces covered with alkyl monolayers immersed in liquid solvents. Three pairs of interfaces, ranging from hydrophobic CH3/CH3 to hydrophilic OH/OH, were studied. Three solvents, including water, methanol, and n-decane were used to represent different solvent polarities. It was showed that friction was dependent not only on surface hydrophobicity, but also on solvent polarity. In polar solvents (e.g., water), friction is much larger for hydrophilic than hydrophobic interfaces, while in nonpolar solvents, e.g., n-decane, friction has no significant difference for both hydrophobic and hydrophilic monolayers. A fundamental understanding of friction at different interfaces in various solvents is very important to micro- or nanoelectromechanical systems (MEMS/NEMS), particularly, bio-MEMS/NEMS. (C) 2003 American Institute of Physics. [References: 47]
机译:进行非平衡分子动力学模拟,以研究被浸在液体溶剂中的烷基单层覆盖的两个Si(111)表面之间的纳米级摩擦。研究了三对界面,范围从疏水CH3 / CH3到亲水OH / OH。三种溶剂(包括水,甲醇和正癸烷)用于代表不同的溶剂极性。结果表明,摩擦不仅取决于表面疏水性,还取决于溶剂极性。在极性溶剂(例如水)中,亲水性的摩擦要比疏水性界面大得多,而在非极性溶剂(例如正癸烷)中,疏水性和亲水性单层的摩擦力均无显着差异。对各种溶剂在不同界面处的摩擦的基本了解对于微或纳米机电系统(MEMS / NEMS),尤其是生物MEMS / NEMS非常重要。 (C)2003美国物理研究所。 [参考:47]

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