Wolstenholme David J, Weigand Jan J, Davidson Reagan J, Pearson Jason K, Cameron T Stanley
Department of Chemistry, Dalhousie University, Halifax, Nova Scotia, Canada, B3H 4J3.
J Phys Chem A. 2008 Apr 17;112(15):3424-31. doi: 10.1021/jp710527z. Epub 2008 Mar 19.
The experimental charge density for hexamethyldiphosphonium ditriflate has been determined from low-temperature high-resolution X-ray diffraction data. These results have been compared with theoretically calculated values for the isolated gas-phase compound. Analysis of the topological and atomic basin properties has provided insight into the exact nature of the P-P bond in both the crystalline and the gas-phase structures. The rho(b)(r) and nabla2rho(b)(r) values highlight the covalent nature of the P-P bond, while the atomic charges indicate a localization of the positive charges on the two phosphorus atoms. This seems to indicate that a covalent bond is formed despite a strong electrostatic repulsion between these two heteroatoms. The topological properties and electrostatic potentials have also been shown to provide significant insight into the chemical reactivity of the title compound. A topological analysis of P2Me4, P2Me5(+), and P2Me6(+2) species has provided information about the progression of the P-P bond in the synthesis of the title compound. An investigation of the different hydrogen-bonding networks present in the crystalline and gas-phase structures, along with their affect on the electronic structure of the title compound has also been investigated. This has all led to significant new insight into the electronic structure, reactivity, and weak hydrogen bonding in prototypical 1,2-diphosphonium dications.
已根据低温高分辨率X射线衍射数据确定了六甲基二鏻双三氟甲磺酸盐的实验电荷密度。这些结果已与孤立气相化合物的理论计算值进行了比较。对拓扑和原子盆地性质的分析为深入了解晶体和气相结构中P-P键的确切性质提供了依据。ρ(b)(r)和▽²ρ(b)(r)值突出了P-P键的共价性质,而原子电荷表明正电荷定域在两个磷原子上。这似乎表明,尽管这两个杂原子之间存在强烈的静电排斥,但仍形成了共价键。拓扑性质和静电势也已被证明能为标题化合物的化学反应性提供重要见解。对P2Me4、P2Me5(+)和P2Me6(+2)物种的拓扑分析提供了有关标题化合物合成中P-P键进展的信息。还研究了晶体和气相结构中存在的不同氢键网络及其对标题化合物电子结构的影响。这一切都为原型1,2-二鏻双阳离子的电子结构、反应性和弱氢键提供了重要的新见解。