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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Effects of Chain Length on Adhesive Force between Gold Tip and Gold Substrate Covered with Alkanethiol Self-Assembled Monolayers
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Effects of Chain Length on Adhesive Force between Gold Tip and Gold Substrate Covered with Alkanethiol Self-Assembled Monolayers

机译:链长对烷硫醇自组装单层覆盖的金尖端与金基底之间粘附力的影响

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摘要

The effects of chain length on adhesive force between a gold-coated tip and a Au(111) substrate covered with alkanethiol self-assembled monolayers (SAMs) were studied. By microcontact printing (μ-CP), we prepared a patterned surface covered with two types of n-alkanethiol that have the same CH_3-terminal functional group but different chain lengths. As a method for mapping adhesive force, pulsed-force-mode atomic force microscopy (PFM-AFM) was used. PFM-AFM enables the simultaneous imaging of surface topography and adhesive force. Regardless the use of the same CH_3-terminal functional group to modify a surface, a difference in adhesive force corresponding to the printed pattern was observed. The adhesive force on a printed region covered with a longer alkanethiol SAM was slightly smaller than that of an unprinted region covered with a shorter alkanethiol SAM chemisorbed from solution after μ-CP. The possible molecular mechanisms for the difference in the observed adhesive force were discussed in detail.
机译:研究了链长对涂金的尖端与被烷硫醇自组装单分子膜(SAMs)覆盖的Au(111)基底之间的粘附力的影响。通过微接触印刷(μ-CP),我们制备了图案化的表面,该表面覆盖有两种具有相同CH_3末端官能团但链长不同的正构烷硫醇。作为映射粘着力的方法,使用了脉冲力模式原子力显微镜(PFM-AFM)。 PFM-AFM可以同时成像表面形貌和粘附力。不管使用相同的CH 3末端官能团来修饰表面,都观察到与印刷图案相对应的粘合力差异。涂有较长链烷硫醇SAM的印刷区域上的粘合力略小于从μ-CP后从溶液化学吸附的涂有较短链烷硫醇SAM的未印刷区域的粘合力。详细讨论了观察到的粘合力差异的可能分子机理。

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