Tu Yaoquan, Luo Yi, Agren Hans
Theoretical Chemistry, Royal Institute of Technology, Alba Nova University Center, S-10691 Stockholm, Sweden.
J Phys Chem B. 2005 Sep 8;109(35):16730-5. doi: 10.1021/jp051267t.
Octupolar molecules are generally believed to be of potential use in developing nonlinear optical materials owing to the fact that they do not easily form molecular aggregates. This is often put against the conjectured drawback that electric fields have no poling, or ordering, effect for this class of molecules because of the lack of a permanent ground state dipole moment. In this paper, we analyze this notion in some detail and present results from molecular dynamics computer simulations of an ensemble of a prototypical octupolar molecule, the 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) molecule, dissolved in chloroform. It is found that TATB molecules indeed show rather significant dipole moments in solutions because of the dual action of the thermal motions of the atoms and the strong intermolecular interactions. Applied electric fields accordingly show significant effects on the orientations of the molecular dipole moments. We also find that TATB molecules can aggregate because of the strong hydrogen-bonding interactions between the molecules, though they lack a static permanent dipole moment. Thus, the simulation results for TATB molecules in solution present us with a totally different notion about the collective properties of octupolar molecules. Taking account of quantum chemistry results, we found that the collective molecular nonlinear optical (NLO) properties are enhanced after the onset of the electric field, showing significant anisotropic characteristics.
八极分子通常被认为在开发非线性光学材料方面具有潜在用途,因为它们不容易形成分子聚集体。这通常与一个推测的缺点相矛盾,即由于缺乏永久基态偶极矩,电场对这类分子没有极化或有序化作用。在本文中,我们详细分析了这一概念,并给出了一个原型八极分子,即1,3,5 - 三氨基 - 2,4,6 - 三硝基苯(TATB)分子溶解在氯仿中的分子动力学计算机模拟结果。研究发现,由于原子热运动和强分子间相互作用的双重作用,TATB分子在溶液中确实表现出相当显著的偶极矩。因此,外加电场对分子偶极矩的取向有显著影响。我们还发现,尽管TATB分子缺乏静态永久偶极矩,但由于分子间强烈的氢键相互作用,它们可以聚集。因此,TATB分子在溶液中的模拟结果为我们提供了一个关于八极分子集体性质的完全不同的概念。考虑到量子化学结果,我们发现电场作用后分子的集体非线性光学(NLO)性质增强,呈现出显著的各向异性特征。