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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of Relative Humidity on the Viscoelasticity of Thin Organic Films Studied by Contact Thermal Noise AFM
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Effect of Relative Humidity on the Viscoelasticity of Thin Organic Films Studied by Contact Thermal Noise AFM

机译:相对湿度对接触热噪声AFM研究薄有机膜粘弹性的影响

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摘要

Material scientists are in need of experimental techniques that facilitate a quantitative mechanical characterization of mesoscale materials and, therefore, their rational design. An example is that of thin organic films, as their performance often relates to their ability to withstand use without damage. The mechanical characterization of thin films has benefited from the emergence of the atomic force microscope (AFM). In this regard, it is of relevance that most soft materials are not elastic but viscoelastic instead. While most AFM operation modes and analysis procedures are suitable for elasticity studies, the use of AFM for quantitative viscoelastic characterizations is still a challenge. This is now an emerging topic due to recent developments in contact resonance AFM. The aim of this work was to further explore the potential of this technique by investigating its sensitivity to viscoelastic changes induced by environmental parameters, specifically humidity. Here, we show that by means of this experimental approach, it was possible to quantitatively monitor the influence of humidity on the viscoelasticity of two different thin and hydrophobic polyurethane coatings representative of those typically used to protect materials from processes like weathering and wear. The technique was sensitive even to the transition between the antiplasticizing and plasticizing effects of ambient humidity. Moreover, we showed that this was possible without the need of externally exciting the AFM cantilever or the sample, i.e., just by monitoring the Brownian motion of cantilevers, which significantly facilitates the implementation of this technique in any AFM setup.
机译:材料科学家需要实验技术,其促进了Mescle材料的定量力学表征,因此是它们的理性设计。一个例子是薄有机薄膜,因为它们的性能通常涉及其耐受无损的能力而不会损坏。薄膜的机械表征有利于原子力显微镜(AFM)的出现。在这方面,大多数软材料不是弹性而是粘弹性的相关性。虽然大多数AFM操作模式和分析程序适用于弹性研究,但是使用AFM进行定量粘弹性表征仍然是一个挑战。这是由于近期接触共振AFM的发展导致的新兴话题。这项工作的目的是通过研究环境参数诱导的粘弹性变化,特别是湿度来进一步探索该技术的潜力。在这里,我们表明,通过这种实验方法,可以定量地监测代表通常用于保护材料的两种不同薄型和疏水聚氨酯涂料的粘弹性对通常用于保护材料等风化和磨损的方法的粘弹性的影响。甚至对环境湿度的抗塑化和增塑效果之间的过渡,该技术甚至敏感。此外,我们表明,没有需要外部激动AFM悬臂或样品,即,即通过监测悬臂的布朗运动,这显着促进了这种技术在任何AFM设置中的实施。

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