Lamparska Ewa, Liégeois Vincent, Quinet Olivier, Champagne Benoît
Laboratoire de Chimie Théorique Appliquée, Groupe de Chimie Physique, Facultés Universitaires Notre-Dame de la Paix rue de Bruxelles 61, 5000 Namur, Belgium.
Chemphyschem. 2006 Nov 13;7(11):2366-76. doi: 10.1002/cphc.200600451.
Raman and vibrational Raman optical activity (VROA) spectra of helical conformers of polypropylene chains are simulated using ab initio methods to unravel the relationships between the vibrational signatures and the primary and secondary structures of the chains. For a polypropylene chain containing three units, conformational effects are shown to lead to more acute signatures for VROA than for Raman spectra. In addition to regular polypropylene chains, which can display right and left helicities with the same probability, chirality and therefore helicity are enforced by substituting one chain end with a phenyl group. The simulations predict that the threefold helical structures, which correspond to (TG)(N) conformations of the backbone, have a specific VROA backward signature in the form of an intense couplet around 1100 cm(-1). This couplet is associated with collective wagging and twisting motions, while most of its intensity comes from the anisotropic invariants combining normal coordinate derivatives of the electric dipole-electric dipole polarizability and of the electric dipole-magnetic dipole polarizability. A similar signature has already been found in model helical polyethylene chains, whereas it is very weak in forward VROA.
使用从头算方法模拟了聚丙烯链螺旋构象体的拉曼光谱和振动拉曼光学活性(VROA)光谱,以揭示振动特征与链的一级和二级结构之间的关系。对于包含三个单元的聚丙烯链,构象效应导致VROA的特征比拉曼光谱更为尖锐。除了可以以相同概率显示右旋和左旋螺旋的规则聚丙烯链外,通过用苯基取代一个链端来引入手性,进而产生螺旋性。模拟预测,对应于主链(TG)(N)构象的三重螺旋结构在1100 cm-1左右有一个强烈的双峰形式的特定VROA反向特征。这个双峰与集体摇摆和扭转运动相关,而其大部分强度来自于电偶极 - 电偶极极化率和电偶极 - 磁偶极极化率的法向坐标导数相结合的各向异性不变量。在模型螺旋聚乙烯链中已经发现了类似的特征,而在正向VROA中它非常微弱。