Cacelli Ivo, Prampolini Giacomo, Tani Alessandro
Dipartimento di Chimica e Chimica Industriale, Università di Pisa, via Risorgimento 35, I-56126 Pisa, Italy.
J Phys Chem B. 2005 Mar 3;109(8):3531-8. doi: 10.1021/jp045716l.
Bulk phase atomistic computer simulations of 4-n-pentyl-4'-cyanobiphenyl (5CB) were performed with a specific force field obtained from ab initio and DFT calculations. The intermolecular potential was previously derived through the fragmentation reconstruction method (FRM), developed in our group. The description of some intramolecular interactions, like the torsional potential between the phenyl rings and at the aryl-alkyl linkage, is achieved through accurate DFT studies. Lengthy ( approximately 40 ns) molecular dynamics (MD) simulations were then carried out at constant atmospheric pressure and different temperatures. The system was stable in the experimental crystalline structure up to 285 K, where the early stage of the melting process appears with the loss of positional order. At higher temperatures (between 290 and 305 K) a kinetically stable, orientationally ordered phase is obtained. This nematic phase was reached starting with three initial configurations, differing in their orientational order parameter. The calculated values of thermodynamic and structural properties of each phase were in fairly good agreement with the relevant experimental data.
使用从从头算和密度泛函理论(DFT)计算获得的特定力场,对4-正戊基-4'-氰基联苯(5CB)进行了体相原子计算机模拟。分子间势先前是通过我们小组开发的碎片重建方法(FRM)推导出来的。一些分子内相互作用的描述,如苯环之间以及芳基-烷基键处的扭转势,是通过精确的DFT研究实现的。然后在恒定大气压和不同温度下进行了长时间(约40纳秒)的分子动力学(MD)模拟。该系统在高达285 K的实验晶体结构中是稳定的,在该温度下,随着位置有序性的丧失,出现了熔化过程的早期阶段。在较高温度(290至305 K之间)下,获得了一种动力学稳定的、取向有序的相。从三种初始构型开始,其取向序参量不同,都达到了这种向列相。计算得到的各相热力学和结构性质的值与相关实验数据相当吻合。