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Experimental and Theoretical EPR Study of Jahn−Teller-Active [HIPTN[subscript 3]N]MoL Complexes (L = N[subscript 2], CO, NH[subscript 3])

机译:Jahn-Teller-活性[HIpTN [下标3] N] moL配合物(L = N [下标2],CO,NH [下标3])的实验和理论EpR研究

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摘要

The trigonally symmetric Mo(III) coordination compounds [HIPTN[subscript 3]N]MoL (L = N[subscript 2], CO, NH[subscript 3]; [HIPTN3N]Mo = [(3,5-(2,4,6-i-Pr[subscript 3]C[subscript 6]H[subscript 2])[subscript 2]C[subscript 6]H[subscript 3]NCH[subscript 2]CH[subscript 2])[subscript 3]N]Mo) are low-spin d[superscript 3] (S = 1/2) species that exhibit a doubly degenerate [superscript 2]E ground state susceptible to a Jahn−Teller (JT) distortion. The EPR spectra of all three complexes and their temperature and solvent dependences are interpreted within a formal “two-orbital” model that reflects the ground-state configuration, describes the vibronic interactions that lead to the JT distortions, and addresses whether these complexes exhibit static or dynamic JT distortions. The electronic and vibronic properties of these complexes are then analyzed through ab initio quantum chemical computations. It is not possible to interpret the spectroscopic properties of the orbitally degenerate [HIPTN[subscript 3]N]MoL with DFT methods, so we have resorted to multi-reference wavefunction approaches, the entry level of which is the complete active space self-consistent field (CASSCF) method. Overall, the experimental and computational studies provide new insights into the role of trigonal coordination, as enforced by the [HIPTN[subscript 3]N][superscript 3−] ligand, in activating the Mo ion for the binding and reduction of N[subscript 2].
机译:三角对称的Mo(III)配位化合物[HIPTN [下标3] N] MoL(L = N [下标2],CO,NH [下标3]; [HIPTN3N] Mo = [(3,5-(2,4 ,6-i-Pr [下标3] C [下标6] H [下标2])[下标2] C [下标6] H [下标3] NCH [下标2] CH [下标2])[下标3] N] Mo)是低自旋d [上标3](S = 1/2)物种,表现出双简并的[上标2] E基态,容易受到Jahn-Teller(JT)畸变的影响。在正式的“双轨道”模型中解释了所有三个配合物的EPR光谱及其温度和溶剂依赖性,该模型反映了基态构型,描述了导致JT变形的电子相互作用,并解决了这些配合物是否表现出静态或动态JT失真。然后通过从头算起的量子化学计算来分析这些络合物的电子和振动性质。无法通过DFT方法解释轨道退化的[HIPTN [subscript 3] N] MoL的光谱性质,因此我们诉诸于多参考波函数方法,其进入层是完全自洽的活动空间字段(CASSCF)方法。总体而言,实验和计算研究为[HIPTN [下标3] N] [上标3-]配位体在激活Mo离子以结合和还原N [下标]中发挥的三角配位作用提供了新见解。 2]。

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