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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >SCANNING FORCE MICROSCOPIC EXPLORATION OF THE LUBRICATION CAPABILITIES OF N-ALKANETHIOLATE MONOLAYERS CHEMISORBED AT GOLD - STRUCTURAL BASIS OF MICROSCOPIC FRICTION AND WEAR
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SCANNING FORCE MICROSCOPIC EXPLORATION OF THE LUBRICATION CAPABILITIES OF N-ALKANETHIOLATE MONOLAYERS CHEMISORBED AT GOLD - STRUCTURAL BASIS OF MICROSCOPIC FRICTION AND WEAR

机译:金摩擦磨损的N-烷基单分子膜的扫描力显微镜研究-显微摩擦和磨损的结构基础。

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摘要

This paper explores the ability of n-alkanethiolates chemisorbed at Au(111) to function as boundary lubricants at microscopic length scales as probed by scanning force microscopy (SFM). Through an examination of the influence of alkyl chain length, we show that the macroscopic structure of this system, as developed from insights into the chain-packing density via infrared reflection spectroscopy, greatly influences the observed friction and wear. That is, the longer chain monolayers exhibit a markedly lower friction and a reduced propensity to wear than the shorter chain monolayers, a situation that reflects the more extensive cohesive interactions between chains. From the combined weight of these findings, we examine the frictional process within the context of an activation mechanism that involves pressure and shear activation volumes. The ability of longer chain alkanethiolate monolayers to lubricate features that arise from changes in substrate topography is also presented, and the resulting mechanistic issues are discussed. [References: 73]
机译:本文探讨了在Au(111)上化学吸附的正链烷硫醇盐在微观长度尺度上作为边界润滑剂的功能,如扫描力显微镜(SFM)所探测。通过检查烷基链长的影响,我们发现,该系统的宏观结构(通过红外反射光谱从对链堆积密度的洞察力发展而来)极大地影响了观察到的摩擦和磨损。即,较长链的单分子层与较短链的单分子层相比,摩擦力显着降低,磨损倾向降低,这种情况反映了链之间更广泛的内聚相互作用。从这些发现的总权重中,我们在涉及压力和剪切活化体积的活化机理的背景下研究了摩擦过程。还介绍了较长链的链烷硫醇单层润滑由基材形貌变化引起的特征的能力,并讨论了由此产生的机理问题。 [参考:73]

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