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Surface Chemistry Special Feature: Comparative surface dynamics of amorphous and semicrystalline polymer films

机译:表面化学特性:非晶态和半晶态聚合物薄膜的比较表面动力学

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摘要

The surface dynamics of amorphous and semicrystalline polymer films have been measured using helium atom scattering. Time-of-flight data were collected to resolve the elastic and inelastic scattering components in the diffuse scattering of neutral helium atoms from the surface of a thin poly(ethylene terephthalate) film. Debye–Waller attenuation was observed for both the amorphous and semicrystalline phases of the polymer by recording the decay of elastically scattered helium atoms with increasing surface temperature. Thermal attenuation measurements in the specular scattering geometry yielded perpendicular mean-square displacements of 2.7•10-4 Å2 K-1 and 3.1•10-4 Å2 K-1 for the amorphous and semicrystalline surfaces, respectively. The semicrystalline surface was consistently ∼15% softer than the amorphous across a variety of perpendicular momentum transfers. The Debye–Waller factors were also measured at off-specular angles to characterize the parallel mean-square displacements, which were found to increase by an order of magnitude over the perpendicular mean-square displacements for both surfaces. In contrast to the perpendicular motion, the semicrystalline state was ∼25% stiffer than the amorphous phase in the surface plane. These results were uniquely accessed through low-energy neutral helium atom scattering due to the highly surface-sensitive and nonperturbative nature of these interactions. The goal of tailoring the chemical and physical properties of complex advanced materials requires an improved understanding of interfacial dynamics, information that is obtainable through atomic beam scattering methods.
机译:已经使用氦原子散射测量了非晶态和半晶态聚合物膜的表面动力学。收集飞行时间数据,以解决中性氦原子从聚对苯二甲酸乙二酯薄膜表面扩散散射中的弹性和非弹性散射成分。通过记录弹性散射的氦原子随表面温度升高的衰减,可以观察到聚合物的非晶相和半晶相的德拜-沃勒衰减。在镜面散射几何结构中进行热衰减测量得出的垂直均方位移为2.7•10 -4 Å 2 K -1 和3.1•10 -4 Å 2 K -1 分别用于非晶和半结晶表面。在各种垂直动量传递中,半结晶表面始终比非晶态表面软15%左右。 Debye-Waller因子也在镜面反射角下测量,以表征平行均方位移,发现这两个表面均比垂直均方位移增加了一个数量级。与垂直运动相反,半晶态比表面上的非晶态硬约25%。由于这些相互作用的高度表面敏感性和非微扰性,因此可通过低能量中性氦原子散射来唯一获得这些结果。定制复杂的先进材料的化学和物理特性的目标要求对界面动力学有更深入的了解,这是可以通过原子束散射方法获得的信息。

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