Cifelli Mario, De Gaetani Luca, Prampolini Giacomo, Tani Alessandro
Dipartimento di Chimica e Chimica Industriale, Universita di Pisa, via Risorgimento 35, I-56126 Pisa, Italy.
J Phys Chem B. 2008 Aug 14;112(32):9777-86. doi: 10.1021/jp802935q. Epub 2008 Jul 17.
Several dynamic properties of the 4-n-alkyl-4'-cyanobiphenyls series ( nCB) with n=5, 6, 7, 8 have been studied by atomistic molecular dynamics (MD) simulations in the NVE ensemble adopting an ab initio derived force field (J. Phys. Chem. B 2007, 111, 2130). For each homologue, at least two state points, in the nematic and in the isotropic phase, as determined from lengthy equilibration runs performed in the previous work, have been considered. More than 10 ns have been produced at each state point, allowing us to calculate single-molecule properties as the translational and rotational diffusion coefficients along the series. An oscillating behavior of the diffusion coefficients, similar to the observed odd-even effect in static properties, has been predicted by MD. A good agreement with the results of purposely carried out (1)H NMR measurements is achieved, provided the MD values are increased by a factor that accounts for density overestimation. Spinning and tumbling rotational motions, monitored by calculating the rotational diffusion coefficients for all homologues in both phases, agree well with experimental data, at least for 5CB where NMR measures are reported. Collective properties, such as the isotropic shear viscosity and the rotational viscosity coefficient, have been computed for all homologues, and the MD values agree well with the experimental data reported in the literature. Finally, the origin of the odd-even effect, found for all the computed dynamic properties, is addressed.
采用从头算推导的力场,通过NVE系综中的原子分子动力学(MD)模拟,研究了n = 5、6、7、8的4 - n - 烷基 - 4'- 氰基联苯系列(nCB)的几种动力学性质(《物理化学杂志B》2007年,111卷,2130页)。对于每个同系物,根据先前工作中进行的长时间平衡运行确定,考虑了向列相和各向同性相中的至少两个状态点。在每个状态点生成了超过10 ns的数据,这使我们能够计算沿该系列的单分子性质,如平移和旋转扩散系数。MD预测了扩散系数的振荡行为,类似于在静态性质中观察到的奇偶效应。如果将MD值乘以一个考虑密度高估的因子,则与特意进行的(1)H NMR测量结果取得了良好的一致性。通过计算两个相中所有同系物的旋转扩散系数来监测的自旋和翻滚旋转运动,至少对于报道了NMR测量的5CB而言,与实验数据吻合良好。已经计算了所有同系物的集体性质,如各向同性剪切粘度和旋转粘度系数,MD值与文献中报道的实验数据吻合良好。最后,探讨了在所有计算的动力学性质中发现的奇偶效应的起源。