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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Comparison of silicon and OH-modified AFM tips for adhesion force analysis on functionalised surfaces and natural polymers
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Comparison of silicon and OH-modified AFM tips for adhesion force analysis on functionalised surfaces and natural polymers

机译:硅和OH改性AFM提示对官能化表面和天然聚合物的粘附力分析的比较

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摘要

In this paper, the position resolved adhesion behaviour of AFM cantilevers with standard silicon tips, rounded silicon tips and OH-modified tips was compared. Surfaces of a flat functionalised microscopy glass slide (hydrophilic background with hydrophobic spots) and of a comparably rough wood/wax sample were scanned in gaseous atmosphere. These two samples were chosen because both of them contain polar and non-polar regions within an area small enough to be scanned at once by the AFM without relevant quality loss due high scan speeds. Moreover, OH and CH3 modified cantilever chips providing very flat functionalised surfaces were scanned. Except for the wood/wax sample, measurements were performed at different humidity levels - with only very little influence on the measured adhesion. Both silicon and OH modified tips showed a higher adhesion on the polar regions of each sample than on the non-polar ones. The difference between the adhesion values on the polar and non-polar surfaces was however systematically higher when standard silicon tips were used. This was also true on the wood/wax sample. As silicon tips are relatively cheap, robust and have a much smaller radius than typical functionalised tips, they allow simple high resolution differentiation of polar and non-polar domains even when the sample surface is relatively rough, as it is the case for natural wood-based polymers.
机译:在本文中,比较了AFM悬臂与标准硅尖端,圆形硅提示和OH改性提示的位置解决了粘附性能。扁平官能化显微镜玻璃载玻片(带有疏水斑点的亲水背景)和相对粗糙的木材/蜡样品的表面在气态气氛中扫描。选择了这两个样品,因为它们中的两个都含有在足够小的区域内的极性和非极性区域,以便通过AFM扫描一次,而无需相关的质量损失,因此具有高扫描速度。此外,扫描提供非常平坦的官能化表面的OH和CH3改性悬臂芯片。除了木材/蜡样品外,在不同的湿度水平下进行测量 - 仅对测量的粘合性影响很小。硅和OH改性提示在每个样品的极性区域上显示出比非极性的极性区域更高的粘附性。然而,当使用标准硅尖端时,极性和非极性表面上的粘附值与非极性表面的差值之间的差异。在木材/蜡样上也是如此。由于硅尖相对便宜,坚固且具有比典型的功能化尖端更小的半径,因此即使当样品表面相对粗糙时,它们也允许单极和非极性域的简单高分辨率分化,因为它是天然木材的情况 - 基于聚合物。

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