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Low-frequency vibrations in monomers, dimers and polymers of propylene glycol

机译:丙二醇的单体,二聚体和聚合物中的低频振动

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We have studied the low-frequency dynamics of oligomers (n = 1 and n = 2) and polymers (n = 45) of propylene glycol using molecular dynamics (MD) simulations. The polymer structure was built from a reverse Monte Carlo (RMC) simulation of the static structure factors S(Q) obtained for ordinary and deuterated poly(prolylene oxide) from neutron diffraction. The fraction of the different stereo-isomers obtained in this way was checked by performing C-13 nuclear magnetic resonance studies on the polymers. The RMC polymer structure was used as a starting structure for MD simulations of the polymer, whereas the shorter-chain oligomers were simulated using random starting structures. The vibrational density of states was calculated from the Fourier transform of the velocity autocorrelation function. Our results indicate that the low-frequency peak below 100 cm(-1), generally referred to as the boson peak, is to a large extent due to intermolecular degrees of freedom, the peak position and shape being rather insensitive to changes in the intrachain dynamics. [References: 10]
机译:我们使用分子动力学(MD)模拟研究了丙二醇的低聚物(n = 1和n = 2)和聚合物(n = 45)的低频动力学。聚合物结构是根据对中子衍射法得到的普通和氘代聚环氧丙烷的静态结构因子S(Q)的反向蒙特卡洛(RMC)模拟而建立的。通过对聚合物进行C-13核磁共振研究来检查以此方式获得的不同立体异构体的分数。 RMC聚合物结构用作聚合物MD模拟的起始结构,而短链低聚物则使用随机起始结构进行模拟。根据速度自相关函数的傅立叶变换计算状态的振动密度。我们的结果表明,低于100 cm(-1)的低频峰(通常称为玻色子峰)在很大程度上是由于分子间的自由度,峰的位置和形状对链内变化不敏感动力学。 [参考:10]

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