Bezombes Jean-Philippe, Borisenko Konstantin B, Hitchcock Peter B, Lappert Michael F, Nycz Jacek E, Rankin David W H, Robertson Heather E
Department of Chemistry, University of Sussex, Brighton, UK BN1 9QJ.
Dalton Trans. 2004 Jul 7(13):1980-8. doi: 10.1039/b402926g. Epub 2004 May 28.
Treatment of PClN(SiMe3)2 (1) with potassium-graphite in thf afforded the colourless, crystalline diphosphine [PN(SiMe3)2]2 (2) in good yield. Sublimation of 2 in vacuo yielded the yellow phosphinyl radical PN(SiMe3)2 (3), which upon cooling reverted to 2; the latter in C6D6 at 298 K was a mixture of rac and meso diastereoisomers. The yellow, crystalline phosphenium salt [PN(SiMe3)2][AlCl4] (4) was obtained from 1 and 1/2Al2Cl6 in CH2Cl2. By single-crystal X-ray diffraction (XRD) the structures of the known compound 1 and of 2 and 4 were determined. The structure of the radical 3, formed by the thermal homolytic dissociation of the diphosphine 2, was determined in the gas phase by electron diffraction (GED), utilising data from UMP2/6-31+G*ab initio calculations. The model of the molecule in the GED structure analysis was described by a set of internal coordinates and an initial set of Cartesian coordinates from ab initio calculations, facilitating the structure analysis. The experimental data were found to be consistent with the presence of a single conformer of the radical in the gas phase. The computed standard homolytic dissociation enthalpy of the P-P bond in the corresponding diphosphine 2, corrected for BSSE, 54 kJ mol(-1), is substantially reduced compared to the dissociation enthalpy of tetramethyldiphosphine by the reorganisation energies of the fragments that form upon dissociation. The intrinsic energy content of the P-P bond in the diphosphine 2 was estimated to be 286 kJ mol(-1), in agreement with the results of previous work on a series of crowded diphosphines.
在四氢呋喃中用钾 - 石墨处理PClN(SiMe3)2(1),以良好的产率得到无色晶体二膦[PN(SiMe3)2]2(2)。2在真空中升华得到黄色膦基自由基PN(SiMe3)2(3),冷却后又转变为2;后者在C6D6中于298 K时是外消旋和内消旋非对映异构体的混合物。黄色晶体鏻盐[PN(SiMe3)2][AlCl4](4)由1和1/2Al2Cl6在二氯甲烷中制得。通过单晶X射线衍射(XRD)确定了已知化合物1以及2和4的结构。利用UMP2/6 - 31 + G*从头算计算的数据,通过电子衍射(GED)在气相中确定了由二膦2热均裂解离形成的自由基3的结构。在GED结构分析中,分子模型由一组内部坐标和从头算计算得到的初始笛卡尔坐标描述,便于结构分析。实验数据表明气相中存在该自由基的单一构象体。考虑基组重叠误差(BSSE)校正后,相应二膦2中P - P键的计算标准均裂解离焓为54 kJ mol(-1),与四甲基二膦的解离焓相比,由于解离时形成的碎片的重组能而大幅降低。二膦2中P - P键的内在能量估计为286 kJ mol(-1),与先前关于一系列拥挤二膦的研究结果一致。