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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >SCANNING FORCE MICROSCOPY STUDY OF PATTERNED MONOLAYERS OF ALKANETHIOLS ON GOLD - IMPORTANCE OF TIP-SAMPLE CONTACT AREA IN INTERPRETING FORCE MODULATION AND FRICTION FORCE MICROSCOPY IMAGES
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SCANNING FORCE MICROSCOPY STUDY OF PATTERNED MONOLAYERS OF ALKANETHIOLS ON GOLD - IMPORTANCE OF TIP-SAMPLE CONTACT AREA IN INTERPRETING FORCE MODULATION AND FRICTION FORCE MICROSCOPY IMAGES

机译:链烷醇在金上构图的单分子层的扫描力显微镜研究-尖端样品接触区域在解释力调制和摩擦力显微图像中的重要性

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摘要

Several patterned monolayers of alkanethiols CH3(CH2)(n-1)SH on a polycrystalline Au substrate were prepared by using microcontact printing and solution deposition methods, and their surfaces were examined by IR spectroscopy, scanning force microscopy, lateral force microscopy (LFM), and force modulation microscopy(FMM). Our work Shows that LFM and FMM can detect differences in packing density of chemically identical molecules which are too small to be detected by IR, ellipsometry, and wetting measurements and suggests that the tip-sample contact area is an important parameter governing the contrasts of LFM and FMM images. Stiffness images obtained with FMM depend on changes in the Young's modulus of a sample surface as well as in the tip-sample contact area. As a result, a surface region of small modulus can have a large stiffness due to its large contact area. [References: 28]
机译:通过微接触印刷和溶液沉积方法,在多晶Au基底上制备了多个烷硫醇CH3(CH2)(n-1)SH图案化的单层膜,并通过红外光谱,扫描力显微镜,横向力显微镜(LFM)对其表面进行了检查。 ,以及力调制显微镜(FMM)。我们的工作表明,LFM和FMM可以检测出化学上相同的分子的堆积密度差异,这些差异太小,无法通过IR,椭偏和湿润测量法检测到,并表明针尖样品接触面积是控制LFM对比度的重要参数和FMM图片。用FMM获得的刚度图像取决于样品表面的杨氏模量以及尖端样品接触面积的变化。结果,小模量的表面区域由于其大的接触面积而可以具有大的刚度。 [参考:28]

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