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具有皮米分辨率的短程化学力的三维成像。

Three-dimensional imaging of short-range chemical forces with picometre resolution.

作者信息

Albers Boris J, Schwendemann Todd C, Baykara Mehmet Z, Pilet Nicolas, Liebmann Marcus, Altman Eric I, Schwarz Udo D

机构信息

Department of Mechanical Engineering and Center for Research on Interface Structures and Phenomena, Yale University, New Haven, USA.

出版信息

Nat Nanotechnol. 2009 May;4(5):307-10. doi: 10.1038/nnano.2009.57. Epub 2009 Apr 6.

Abstract

Chemical forces on surfaces have a central role in numerous scientific and technological fields, including catalysis, thin film growth and tribology. Many applications require knowledge of the strength of these forces as a function of position in three dimensions, but until now such information has only been available from theory. Here, we demonstrate an approach based on atomic force microscopy that can obtain this data, and we use this approach to image the three-dimensional surface force field of graphite. We show force maps with picometre and piconewton resolution that allow a detailed characterization of the interaction between the surface and the tip of the microscope in three dimensions. In these maps, the positions of all atoms are identified, and differences between atoms at inequivalent sites are quantified. The results suggest that the excellent lubrication properties of graphite may be due to a significant localization of the lateral forces.

摘要

表面上的化学力在众多科学和技术领域中都起着核心作用,包括催化、薄膜生长和摩擦学。许多应用需要了解这些力的强度随三维空间位置的变化情况,但到目前为止,此类信息仅能从理论中获取。在此,我们展示了一种基于原子力显微镜的方法,该方法能够获取此类数据,并且我们使用此方法对石墨的三维表面力场进行成像。我们展示了具有皮米和皮牛顿分辨率的力图谱,这些图谱能够在三维空间中对表面与显微镜尖端之间的相互作用进行详细表征。在这些图谱中,所有原子的位置都得以确定,并且不等价位点处原子之间的差异也得到了量化。结果表明,石墨出色的润滑性能可能归因于横向力的显著局域化。

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