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首页> 外文期刊>The Journal of Chemical Physics >Comparative study of normal and branched alkane monolayer films adsorbed on a solid surface. II. Dynamics
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Comparative study of normal and branched alkane monolayer films adsorbed on a solid surface. II. Dynamics

机译:吸附在固体表面上的正构烷烃和支链烷烃单层膜的比较研究。二。动力学

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The dynamics of monolayer films of the n-alkane tetracosane (n-C24H52) and the branched alkane squalane (C30H62) adsorbed on graphite have been studied by quasielastic and inelastic neutron scattering and molecular dynamics (MD) simulations. Both molecules have 24 carbon atoms along their carbon backbone, and squalane has an additional six methyl side groups symmetrically placed along its length. The authors' principal objective has been to determine the influence of the side groups on the dynamics of the squalane monolayer and thereby assess its potential as a nanoscale lubricant. To investigate the dynamics of these monolayers they used both the disk chopper spectrometer (DCS) and the high flux backscattering spectrometer (HFBS) at the National Institute of Standards and Technology. These instruments made it possible to study dynamical processes such as molecular diffusive motions and vibrations on very different time scales: 1-40 ps (DCS) and 0.1-4 ns (HFBS). The MD simulations were done on corresponding time scales and were used to interpret the neutron spectra. The authors found that the dynamics of the two monolayers are qualitatively similar on the respective time scales and that there are only small quantitative differences that can be understood in terms of the different masses and moments of inertia of the two molecules. In the course of this study, the authors developed a procedure to separate out the low-frequency vibrational modes in the spectra, thereby facilitating an analysis of the quasielastic scattering. They conclude that there are no major differences in the monolayer dynamics caused by intramolecular branching. It remains to be seen whether this similarity in monolayer dynamics also holds for the lubricating properties of these molecules in confined geometries. (c) 2007 American Institute of Physics.
机译:通过准弹性和非弹性中子散射和分子动力学(MD)模拟,研究了正烷烃四二十烷(n-C24H52)和支链烷烃角鲨烷(C30H62)吸附在石墨上的单层膜动力学。两个分子沿其碳主链具有24个碳原子,角鲨烷沿其长度对称地具有另外六个甲基侧基。作者的主要目的是确定侧基对角鲨烷单层动力学的影响,从而评估其作为纳米级润滑剂的潜力。为了研究这些单分子层的动力学,他们使用了美国国家标准技术研究院的盘式斩波光谱仪(DCS)和高通量反向散射光谱仪(HFBS)。这些仪器使研究动力学过程成为可能,例如在非常不同的时间范围内:分子扩散运动和振动:1-40 ps(DCS)和0.1-4 ns(HFBS)。 MD模拟在相应的时间尺度上完成,并用于解释中子光谱。作者发现,两个单分子层的动力学在各自的时间尺度上在质量上是相似的,并且就两个分子的不同质量和惯性矩而言,只有很小的定量差异可以理解。在这项研究的过程中,作者开发了一种程序来分离频谱中的低频振动模式,从而有助于对准弹性散射的分析。他们得出结论,分子内分支引起的单层动力学没有重大差异。单层动力学的这种相似性是否也适用于这些分子在有限几何形状中的润滑性能还有待观察。 (c)2007年美国物理研究所。

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