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单词 Friction force microscopy
释义

Friction force microscopy

英语百科

Chemical force microscopy

(重定向自Friction force microscopy)
Figure 1: Photograph of an AFM system which can be used for chemical force microscopy.
Figure 2: (Left) Probe tip being pulled from a similarly functionalized patterned area on the substrate to determine adhesion force.
(Right) Typical force profile for adhesion force measurements. The dashed line is indicative of detachment for less probe-substrate interaction versus the solid line.
Figure 3: (Top) Scan of a patterned surface with regular tip (no functional groups) would produce an image with no contrast because the surface is morphologically uniform.
(Middle) A hydrophilic tip on the hydrophilic functionalized portion of the surface causes the cantilever to bend due to strong interactions which is detected by laser deflection therefore producing a chemical profile image of the surface.
(Bottom) Cantilever functionalization is switched such that the tip is bent when encountering hydrophobic areas of the substrate instead.
Figure 4: Typical response of frictional force to applied load by the tip. Stronger tip-substrate interactions result in steeper slopes.

Chemical force microscopy (CFM) is a variation of atomic force microscopy (AFM) which has become a versatile tool for characterization of materials surfaces. With AFM, structural morphology is probed using simple tapping or contact modes that utilize van der Waals interactions between tip and sample to maintain a constant probe deflection amplitude (constant force mode) or maintain height while measuring tip deflection (constant height mode). CFM, on the other hand, uses chemical interactions between functionalized probe tip and sample. Choice chemistry is typically gold-coated tip and surface with R-SH thiols attached, R being the functional groups of interest. CFM enables the ability to determine the chemical nature of surfaces, irrespective of their specific morphology, and facilitates studies of basic chemical bonding enthalpy and surface energy. Typically, CFM is limited by thermal vibrations within the cantilever holding the probe. This limits force measurement resolution to ~1 pN which is still very suitable considering weak COOH/CH3 interactions are ~20 pN per pair. Hydrophobicity is used as the primary example throughout this consideration of CFM, but certainly any type of bonding can be probed with this method.

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更新时间:2025/6/22 5:22:24