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Shear resonance measurement on structuring of liquids confined between mica surfaces

机译:云端表面限制液体结构的剪切共振测量

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The behavior of liquid molecules confined in nanometer-scale spaces is quite different from that in the bulk. The structuring of liquids confined between solid surfaces was investigated using a shear force resonance method, which was developed in order to examine in detail the ordering behavior of liquid molecules confined between two mica surfaces. The frequency and the amplitude of the resonance peak are highly sensitive to the long-range order and properties of the confined sample, affording information about the structuring, and frictional and lubrication properties of the liquids from the nanometer thickness to the bulk. This measurement was used to study the properties of octamethylcyclotetrasiloxane (OMCTS) confined between mica surfaces, and was compared with those of 4-cyano-4'-hexylbiphenyl, a liquid crystal molecule. Both liquids are known to exhibit an oscillation force. The resonance peak intensity measured in the presence of OMCTS showed no decrease down to the surface distance of 5 nm upon compression, and abruptly disappeared at 4.6 nm. This means that the resonance peak intensity was damped by the abrupt increase in the viscosity of OMCTS induced by the confinement. Broad and weak resonance peaks centered at angular frequencies of 250-305 s~(-1) were observed while further decreasing the distance, indicating the enhanced structuring of OMCTS between the surfaces. Unlike 4-cyano-4'-hexylbiphenyl, finally, OMCTS was completely removed from the gap, and a resonance peak similar to that of mica contact in air appeared.
机译:限制在纳米级空间中的液体分子的行为与体积的液体分子完全不同。使用剪切力共振方法研究了固体表面之间限制在固体表面之间的液体的结构,以便详细检查液体分子限制在两个云母表面之间的排序行为。谐振峰的频率和幅度对限制样品的远程顺序和性质非常敏感,以及液体从纳米厚度到体积的液体的结构化和摩擦和润滑性质的信息。该测量用于研究在云母表面之间限制的八甲基环四硅氧烷(OMCTS)的性质,并与4-氰基-4'-己基哌苯基,液晶分子进行比较。已知两种液体表现出振动力。在常规存在下测量的共振峰强度显示在压缩时不会降低到5nm的表面距离,并且在4.6nm下突然消失。这意味着通过禁闭诱导的OMCT粘度的突然增加,振荡峰值强度被阻尼。在进一步降低距离的同时观察到以250-305S〜(-1)的角度频率为中心的宽且弱的共振峰,表示表面之间的常规结构增强。与4-氰基-4'-己基己烯基不同,最后,从间隙中完全除去OMCT,并且存在类似于空气中的云母接触的共振峰。

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