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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Investigation of the [Cp*Mo(PMe3)(3)H](n+) (n=0, 1) Redox Pair: Dynamic Processes on Very Different Time Scales
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Investigation of the [Cp*Mo(PMe3)(3)H](n+) (n=0, 1) Redox Pair: Dynamic Processes on Very Different Time Scales

机译:[Cp * Mo(PMe3)(3)H](n +)(n = 0,1)氧化还原对的研究:非常不同的时间尺度上的动态过程

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The compound [CP*MO(PMe3)(3)H] (1) is reversibly oxidized at E-1/2 = -1.40 V vs ferrocene in MeCN. Its oxidation with Cp2FePF6 yields thermally stable [Cp*Mo(PMe3)(3)H]PF6 (2), which has been isolated and characterized by IR and EPR spectroscopy and by single-crystal X-ray diffraction. The H-1 and P-31 NMR spectra of 1 show two types of PMe3 ligands in a 1:2 ratio at low temperature, but only one average signal at room temperature, with activation parameters of Delta H-double dagger = 11.7(3) kcal mol(-1) and Delta S-double dagger = -3(1) eu for the exchange process. Although only one species is evidenced by NMR for 1 and by EPR for 2, the solution IR spectra of each complex show two bands in the nu(Mo-H) region (1, major at 1794 cm(-1) and minor at ca. 1730 cm(-1); 2, ca. 1800 and 1770 cm(-1) with approximately equal intensity), the position and relative intensity being little dependent on the solvent. A thorough DFT investigation suggests that these are different rotamers involving different relative orientations of the Cp* ring and the PMe3 ligands in these complexes. This ring rotation process is very rapid on the NMR and EPR time scale but slow on the IR time scale. The X-ray data and the theoretical calculations suggest the presence of weak Mo-H center dot center dot center dot F interactions in compound 2. The possibility of PMe3 dissociation, as well as other intramolecular rearrangements, for 1 and 2 is excluded by experimental and computational studies. Protonation of 1 yields [Cp*Mo(PMe3)(3)H-2](+) (3), which also reveals a dynamic process interconverting the two inequivalent H ligands and the three PMe3 ligands (two sets in a 1:2 ratio in the frozen structure) on the NMR time scale (activation parameters of Delta H double dagger = 9.3(1) kcal/mol and Delta S-double dagger = -4.1(4) eu). A DFT study suggests that this exchange process occurs via a low-energy symmetric dihydride intermediate and not through a dihydrogen complex.
机译:在MeCN中,相对于二茂铁,化合物[CP * MO(PMe3)(3)H](1)在二茂铁的E-1 / 2 = -1.40 V时可逆氧化。其用Cp2FePF6氧化可生成热稳定的[Cp * Mo(PMe3)(3)H] PF6(2),已通过IR和EPR光谱法以及单晶X射线衍射对其进行了分离和表征。 1的H-1和P-31 NMR光谱在低温下以1:2的比例显示两种类型的PMe3配体,但在室温下只有一个平均信号,激活参数为Delta H-双匕首= 11.7(3 )kcal mol(-1)和Delta S-双匕首= -3(1)eu用于交换过程。尽管NMR证明只有1种,EPR证明只有2种,但每种复合物的溶液红外光谱在nu(Mo-H)区显示两个谱带(1个,主要在1794 cm(-1)处,次要在ca处。 1730 cm(-1); 2,大约1800和1770 cm(-1)的强度大致相等),位置和相对强度几乎不依赖于溶剂。彻底的DFT研究表明,这些是不同的旋转异构体,涉及这些复合物中Cp *环和PMe3配体的不同相对取向。该环旋转过程在NMR和EPR时间尺度上非常快,但在IR时间尺度上很慢。 X射线数据和理论计算表明在化合物2中存在弱的Mo-H中心点中心点中心点F相互作用。实验排除了1和2的PMe3解离以及其他分子内重排的可能性。和计算研究。 1的质子化产生[Cp * Mo(PMe3)(3)H-2](+)(3),它还揭示了一个动态过程,将两个不等价的H配体和三个PMe3配体相互转换(两组在1:2 NMR时间尺度上(冻结结构中的比值)(Delta H双匕首的激活参数= 9.3(1)kcal / mol和Delta S双匕首的激活参数= -4.1(4)eu)。 DFT研究表明,这种交换过程是通过低能对称二氢化物中间体而不是通过二氢配合物发生的。

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