首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Molecular Structure of Poly(methyl methacrylate) Surface. I. Combination of Interface-Sensitive Infrared-Visible Sum Frequency Generation, Molecular Dynamics Simulations, and ab Initio Calculations
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Molecular Structure of Poly(methyl methacrylate) Surface. I. Combination of Interface-Sensitive Infrared-Visible Sum Frequency Generation, Molecular Dynamics Simulations, and ab Initio Calculations

机译:聚(甲基丙烯酸甲酯)表面的分子结构。 I.界面敏感型红外可见和频率的产生,分子动力学模拟和从头算的组合

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摘要

The chemical composition and molecular structure of polymeric surfaces are important in understanding wetting, adhesion, and friction. Here, we combine interfacesensitive sum frequency generation spectroscopy (SFG), allatom molecular dynamics (MD) simulations, and ab initio calculations to understand the composition and the orientation of chemical groups on poly(methyl methacrylate) (PMMA) surface as a function of tacticity and temperature. The SFG spectral features for isotactic and syndiotactic PMMA surfaces are similar, and the dominant peak in the spectra corresponds to the ester-methyl groups. The SFG spectra for solid and melt states are very similar for both syndiotactic and isotactic PMMA. In comparison, the MD simulation results show that both the ester-methyl and the α-methyl groups of syndiotactic-PMMA are ordered and tilted toward the surface normal. For the isotactic-PMMA, the α-methyl groups are less ordered compared to their ester-methyl groups. The backbone methylene groups have a broad angular distribution and are disordered, independent of tacticity and temperature. We have compared the SFG results with theoretical spectra calculated using MD simulations and ab initio calculations. Our analysis shows that the weaker intensity of α-methyl groups in SFG spectra is due to a combination of smaller molecular hyperpolarizability, lower ordering, and lower surface number density. This work highlights the importance of combining SFG spectroscopy with MD simulations and ab initio calculations in understanding polymer surfaces.
机译:聚合物表面的化学组成和分子结构对于理解润湿,粘附和摩擦很重要。在这里,我们结合了界面敏感的和频产生光谱(SFG),Allatom分子动力学(MD)模拟和从头算的方法,以了解聚甲基丙烯酸甲酯(PMMA)表面上化学基团的组成和方向作为立构规整度的函数和温度。等规和间规PMMA表面的SFG光谱特征相似,并且光谱中的主峰对应于酯甲基。对于间规PMMA和等规PMMA,固态和熔融态的SFG光谱非常相似。相比之下,MD模拟结果表明间规PMMA的酯甲基和α-甲基均是有序的,并朝表面法线倾斜。对于全同立构-PMMA,与它们的酯-甲基相比,α-甲基的顺序较少。主链亚甲基具有宽的角度分布且无规,与立构规整度和温度无关。我们将SFG结果与使用MD模拟和从头算计算出的理论光谱进行了比较。我们的分析表明,SFG光谱中较弱的α-甲基强度是由于较小的分子超极化性,较低的有序性和较低的表面数密度共同造成的。这项工作强调了将SFG光谱与MD模拟和从头算相结合的重要性,以了解聚合物表面。

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