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化学力显微镜的官能团成像。

Functional group imaging by chemical force microscopy.

出版信息

Science. 1994 Sep 30;265(5181):2071-4. doi: 10.1126/science.265.5181.2071.

Abstract

Mapping the spatial arrangement of chemical functional groups and their interactions is of significant importance to problems ranging from lubrication and adhesion to recognition in biological systems. A force microscope has been used to measure the adhesive and friction forces between molecularly modified probe tips and organic monolayers terminating in a lithographically defined pattern of distinct functional groups. The adhesive interactions between simple CH(3)/CH(3), CH(3)/COOH, and COOH/COOH functional groups correlate directly with friction images of sample surfaces patterned with these groups. Thus, by monitoring the friction between a specifically functionalized tip and sample, one can produce friction images that display predictable contrast and correspond to the spatial distribution of functional groups on the sample surface. Applications of this chemically sensitive imaging technique are discussed.

摘要

绘制化学官能团及其相互作用的空间排列对于从润滑和附着到生物系统中的识别等问题都具有重要意义。力显微镜已被用于测量分子修饰探针尖端与有机单层之间的粘附力和摩擦力,该有机单层在光刻定义的图案中终止于不同的官能团。简单的 CH(3)/CH(3)、CH(3)/COOH 和 COOH/COOH 官能团之间的粘附相互作用与用这些基团图案化的样品表面的摩擦图像直接相关。因此,通过监测特定官能化尖端与样品之间的摩擦力,可以产生显示可预测对比度且对应于样品表面上官能团空间分布的摩擦图像。讨论了这种对化学敏感的成像技术的应用。

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