Instituto de Química, Universidad de Antioquia, AA 1226 Medellín, Colombia.
Phys Chem Chem Phys. 2013 Mar 7;15(9):3203-11. doi: 10.1039/c2cp42778h. Epub 2013 Jan 24.
We present an exhaustive stochastic search of the quantum conformational spaces of the (CH(3)O)(2)PO(2)(-) + nH(2)O (n = 1,2,3) systems. We uncover structural, conformational and energetic features of the problem. As in the isolated species, clusters containing the gauche-gauche (gg) conformation of dimethylphosphate (DMP(-)) are energetically preferred, however, contributions from hydrated gauche-anti (ga) and anti-anti (aa) monomers cannot be neglected because such structures are quite common and because they are close in energy to those containing the gg monomer. At least seven distinct types of O∙∙∙H-O-H contacts lead to DMP(-) ↔ water interactions that are always stabilizing, but not strong enough to induce significant changes in the geometries of either DMP(-) or water units. Our results lead us to postulate DMP(-) to be a suitable model to study explicit and detailed aspects of microsolvation of cell membranes.
我们对 (CH(3)O)(2)PO(2)(-) + nH(2)O(n = 1,2,3)系统的量子构象空间进行了详尽的随机搜索。我们揭示了该问题的结构、构象和能量特征。与孤立物种一样,含有二甲基磷酸酯(DMP(-))的 gauche-gauche(gg)构象的簇是能量上优先的,然而,不能忽略含有水合 gauche-anti(ga)和 anti-anti(aa)单体的贡献,因为这些结构很常见,并且它们的能量与含有 gg 单体的结构相近。至少有七种不同类型的 O∙∙∙H-O-H 接触导致 DMP(-)↔水相互作用,这些相互作用总是稳定的,但不足以引起 DMP(-)或水分子单元的几何形状发生显著变化。我们的结果使我们假设 DMP(-)是一个合适的模型,可以研究细胞膜的微溶剂化的具体和详细方面。