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[Rh(κ3-P,O,P-DREphos)(tricyclopentylphosphine)][B(C6H3-3,5-(CF3)2)4] | 1354037-50-5

中文名称
——
中文别名
——
英文名称
[Rh(κ3-P,O,P-DREphos)(tricyclopentylphosphine)][B(C6H3-3,5-(CF3)2)4]
英文别名
——
[Rh(κ3-P,O,P-DREphos)(tricyclopentylphosphine)][B(C6H3-3,5-(CF3)2)4]化学式
CAS
1354037-50-5
化学式
C32H12BF24*C51H55OP3Rh
mdl
——
分子量
1743.04
InChiKey
PALQCUBJWHGRKC-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    None
  • 重原子数:
    None
  • 可旋转键数:
    None
  • 环数:
    None
  • sp3杂化的碳原子比例:
    None
  • 拓扑面积:
    None
  • 氢给体数:
    None
  • 氢受体数:
    None

反应信息

  • 作为反应物:
    描述:
    [Rh(κ3-P,O,P-DREphos)(tricyclopentylphosphine)][B(C6H3-3,5-(CF3)2)4]氢气 以 not given 为溶剂, 生成 [RhH2(κ2-P,P-DPEphos)(tricyclopentylphosphine)(η2-H2)][B(C6H3-3,5-(CF3)2)4] 、 fac-[RhH2(κ3-P,O,P-DPEphos)(tricyclopentylphosphine)][B(C6H3-3,5-(CF3)2)4]
    参考文献:
    名称:
    Rhodium Cyclopentyl Phosphine Complexes of Wide-Bite-Angle Ligands DPEphos and Xantphos
    摘要:
    Rh(I) and Rh(III) complexes of tricyclopentylphosphine (PCyp(3)), or its dehydrogenated variant PCyp(2)(eta(2)-C5H7), partnered with wide-bite-angle chelating diphosphine ligands DPEphos and Xantphos have been prepared and characterized in solution and the solid state with the aim of studying their potential for reversible dehydrogenation of the PCyp(3) ligand. The complexes fac-[Rh(kappa(3)-P,O,P-L){PCyp2(eta(2)-C5H7)}][BAr4F] (L = DPEphos, Xantphos) show pseudo-trigonal-bipyramidal structures in which the dehydrogenated phosphine alkene ligand acts in a chelating manner. Addition of H-2 to fac-[Rh(id-P,O,P-DPEphos){PCyp2(eta(2)-C5H7)}][BAr4F] resulted in an equilibrium mixture of hydride and hydride-dihydrogen complexes, fac-[Rh(kappa(3)-P,O,P-DPEphos)(H)(2)(PCyp(3))][BAr4F] and [Rh(kappa(2)-P,P-DPEphos)(eta(2)-H-2)(H)(2)(PCyp(3))][BAr4F], in which the DPEphos acts as a hemilabile ligand. For the more rigid Xantphos ligand two dihydride isomers, fac-[Rh(kappa(3)-P,O,P-Xantphos)(H)(2)(PCyp(3))][BAr4F] and mer-[Rh(kappa(3)-P,O,P-Xantphos)(H)(2)(PCyp(3))][BAr4F], are formed, which are also in equilibrium with one another. A van't Hoff analysis of this mixture shows that enthalpically there is very little difference between the two geometries for this system, with the driving force for the preferred far-geometry being entropic. Addition of MeCN to these hydrido complexes results in the central oxygen atom being displaced to form [Rh(kappa(2)-P,P-L)(PCyp(3))(H)(2)(MeCN)][BAr4F], while removal of H-2 from the hydrido complexes (under vacuum or on addition of a hydrogen acceptor) forms the Rh(I) complexes [Rh(kappa(3)-P,O,P-L)(PCyp(3))][BAr4F], which are characterized as having square-planar geometries with meridonial coordination of the respective chelating phosphines. Dehydrogenation of the PCyp3 ligand in these complexes to reform the phosphine-alkene ligands does not occur, even under forcing conditions.
    DOI:
    10.1021/om201034m
  • 作为产物:
    参考文献:
    名称:
    Rhodium Cyclopentyl Phosphine Complexes of Wide-Bite-Angle Ligands DPEphos and Xantphos
    摘要:
    Rh(I) and Rh(III) complexes of tricyclopentylphosphine (PCyp(3)), or its dehydrogenated variant PCyp(2)(eta(2)-C5H7), partnered with wide-bite-angle chelating diphosphine ligands DPEphos and Xantphos have been prepared and characterized in solution and the solid state with the aim of studying their potential for reversible dehydrogenation of the PCyp(3) ligand. The complexes fac-[Rh(kappa(3)-P,O,P-L){PCyp2(eta(2)-C5H7)}][BAr4F] (L = DPEphos, Xantphos) show pseudo-trigonal-bipyramidal structures in which the dehydrogenated phosphine alkene ligand acts in a chelating manner. Addition of H-2 to fac-[Rh(id-P,O,P-DPEphos){PCyp2(eta(2)-C5H7)}][BAr4F] resulted in an equilibrium mixture of hydride and hydride-dihydrogen complexes, fac-[Rh(kappa(3)-P,O,P-DPEphos)(H)(2)(PCyp(3))][BAr4F] and [Rh(kappa(2)-P,P-DPEphos)(eta(2)-H-2)(H)(2)(PCyp(3))][BAr4F], in which the DPEphos acts as a hemilabile ligand. For the more rigid Xantphos ligand two dihydride isomers, fac-[Rh(kappa(3)-P,O,P-Xantphos)(H)(2)(PCyp(3))][BAr4F] and mer-[Rh(kappa(3)-P,O,P-Xantphos)(H)(2)(PCyp(3))][BAr4F], are formed, which are also in equilibrium with one another. A van't Hoff analysis of this mixture shows that enthalpically there is very little difference between the two geometries for this system, with the driving force for the preferred far-geometry being entropic. Addition of MeCN to these hydrido complexes results in the central oxygen atom being displaced to form [Rh(kappa(2)-P,P-L)(PCyp(3))(H)(2)(MeCN)][BAr4F], while removal of H-2 from the hydrido complexes (under vacuum or on addition of a hydrogen acceptor) forms the Rh(I) complexes [Rh(kappa(3)-P,O,P-L)(PCyp(3))][BAr4F], which are characterized as having square-planar geometries with meridonial coordination of the respective chelating phosphines. Dehydrogenation of the PCyp3 ligand in these complexes to reform the phosphine-alkene ligands does not occur, even under forcing conditions.
    DOI:
    10.1021/om201034m
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