论文标题
1,3-丁二烯簇的结构
The structure of 1,3-butadiene clusters
论文作者
论文摘要
理论上使用各种方法,包括经典的力场和不同的量子化学(QC)方法以及其自符合性电荷(SCC)版本的基于密度功能的紧密结合(DFTB),在理论上研究了1,3-丁二烯的分子簇。合适的重新训练后,SCC-DFTB再现了QC水平1,3-丁二烯单体的反式和GAUCHE构象异构体的能量差和扭转屏障。分别研究了最多20个单体的纯跨性别和Gauche构象群,使用力场探索它们的能量景观,然后使用DFT或SCC-DFTB局部重新优化。通常发现全反式簇的能量较低,并产生有序结构的结构,在该结构中,根据人字型序列将平面分子排列。 Gauche构型中的分子簇相对较多的各向同性。还研究了包含单个Gauche分子的混合簇,并发现可以保持人字型图案,通常位于外面的Gauche杂质。在这些簇中,簇在gauche分子上施加的应变会导致在零温度下已经在二面角的显着几何变形。最后,在力场水平上解决了有限温度的特性,结果表明,有序的全反式簇也较容易发生熔化机制。
Molecular clusters of 1,3-butadiene were theoretically investigated using a variety of approaches, encompassing classical force fields and different quantum chemical (QC) methods, as well as density-functional based tight-binding (DFTB) in its self-consistent-charge (SCC) version. Upon suitable reparametrization, SCC-DFTB reproduces the energy difference and torsional barrier of the trans and gauche conformers of the 1,3-butadiene monomer predicted at the QC level. Clusters of pure trans and gauche conformers containing up to 20 monomers were studied separately, their energy landscapes being explored using the force fields, then locally reoptimized using DFT or SCC-DFTB. The all-trans clusters are generally found to be lower in energy and produce well-ordered structures in which the planar molecules are arranged according to a herringbone motif. Clusters of molecules in the gauche configuration are comparatively much more isotropic. Mixed clusters containing a single gauche molecule were also studied and found to keep the herringbone motif, the gauche impurity usually residing outside. In those clusters, the strain exerted by the cluster on the gauche molecule leads to significant geometrical distortion of the dihedral angle already at zero temperature. Finally, the finite temperature properties were addressed at the force field level, and the results indicate that the more ordered all-trans clusters are also prone to sharper melting mechanisms.