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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Using the Adhesive Interaction between Atomic Force Microscopy Tips and Polymer Surfaces to Measure the Elastic Modulus of Compliant Samples
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Using the Adhesive Interaction between Atomic Force Microscopy Tips and Polymer Surfaces to Measure the Elastic Modulus of Compliant Samples

机译:使用原子力显微镜尖端和聚合物表面之间的粘合相互作用来测量顺应性样品的弹性模量

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摘要

An atomic force microscope (AFM) method for measuring surface elasticity based on the adhesive interactions between an AFM tip and sample surfaces is introduced.The method is particularly useful when there is a large adhesion between the tip and soft samples,when the indentation method would be less accurate.For thin and soft samples,this method will have much less interference from the substrate than is found using the indentation method because there is only passive indentation induced by tip-sample adhesion;in contrast,a large indentation with a sharp tip in the sample may break its stress -strain linearity,or even make it fracture.For the case where it is difficult to accurately locate the tip-sample contact point,which is problematic for the indentation method,the method based on adhesive interactions is helpful because it does not require locating the tip-sample contact point when fitting the whole retraction force curve.The model is tested on PDMS polymers with different degrees of cross-linking.
机译:介绍了一种基于原子力显微镜(AFM)的方法,该方法基于AFM尖端与样品表面之间的粘合相互作用来测量表面弹性。当尖端与软样品之间的粘合力较大时,该方法特别有用。对于薄而软的样品,此方法比使用压痕方法发现的对基板的干扰要少得多,因为仅由于尖端样品粘附而导致被动压痕;相反,较大的压痕带有尖锐的尖端在样品中可能会破坏其应力-应变线性,甚至使其断裂。对于难以精确定位尖端样品接触点的情况,这对于压痕法是有问题的,基于粘合剂相互作用的方法是有帮助的因为在拟合整个回缩力曲线时不需要定位尖端样品接触点。该模型在不同程度的PDMS聚合物上进行了测试交联。

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