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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >SYSTEMATIC STUDIES OF THE FRICTIONAL PROPERTIES OF FLUORINATED MONOLAYERS WITH ATOMIC FORCE MICROSCOPY - COMPARISON OF CF3- AND CH3-TERMINATED FILMS
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SYSTEMATIC STUDIES OF THE FRICTIONAL PROPERTIES OF FLUORINATED MONOLAYERS WITH ATOMIC FORCE MICROSCOPY - COMPARISON OF CF3- AND CH3-TERMINATED FILMS

机译:含原子显微镜的氟化单分子膜摩擦性能的系统研究-CF3和CH3终止膜的比较。

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摘要

Molecular-level insight into the frictional properties of fluorinated self-assembled monolayers (SAMs) was achieved by combining two recently developed techniques that operate at the subnanometer scale: control of the interfacial composition through molecular self-assembly and tribological measurements performed with the atomic force microscope. To explore the origin of frictional forces in fluorinated films, the frictional properties of two classes of alkanethiols adsorbed on single crystal gold were measured and compared. In these studies, films of equivalent chain length, packing density and packing energy, but different termination (methyl vs trifluoromethyl), were characterized and investigated. For these films, in which the only detectable difference was the outermost chemical structure composition, a factor of 3 increase in the frictional response was observed in going from the hydrogenated to the fluorinated film. These results support the conclusion that chemical structure/composition alone plays an integral role in determining the frictional properties of an interface. We propose that the difference in friction arises predominantly from the difference in size of the methyl and trifluoromethyl groups. [References: 41]
机译:通过结合在纳米级范围内运行的两种最新开发的技术,获得了对氟化自组装单分子层(SAMs)的摩擦性能的分子水平的了解:通过分子自组装控制界面成分以及利用原子力进行摩擦学测量显微镜。为了探索氟化膜中摩擦力的起源,测量并比较了两类链烷硫醇吸附在单晶金上的摩擦性能。在这些研究中,表征并研究了等效链长,堆积密度和堆积能量但不同的封端(甲基与三氟甲基)的薄膜。对于这些膜,其中唯一可检测到的差异是最外层化学结构组成,从氢化膜到氟化膜观察到摩擦响应增加了3倍。这些结果支持这样的结论:化学结构/成分本身在确定界面的摩擦性能中起着不可或缺的作用。我们认为,摩擦的差异主要是由于甲基和三氟甲基的大小差异引起的。 [参考:41]

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