首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Low-spin hexacoordinate Mn(III): Synthesis and spectroscopic investigation of homoleptic tris(pyrazolyl)borate and tris(carbene)borate complexes
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Low-spin hexacoordinate Mn(III): Synthesis and spectroscopic investigation of homoleptic tris(pyrazolyl)borate and tris(carbene)borate complexes

机译:低自旋六坐标Mn(III):均三(吡唑基)硼酸酯和三(卡宾)硼酸酯配合物的合成和光谱研究

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Three complexes of Mn(III) with "scorpionate" type ligands have been investigated by a variety of physical techniques. The complexes are [Tp_2Mn]SbF_6 (1), [Tp_2*Mn]SbF_6 (2), and [{PhB(MeIm)_3}_2Mn](CF_3SO_3) (3a), where Tp- = hydrotris(pyrazolyl)borate anion, Tp~(*-) = hydrotris(3,5-dimethylpyrazolyl)borate anion, and PhB(MeIm)_3 ~- = phenyltris(3-methylimidazol-2-yl)borate anion. The crystal structure of 3a is reported; the structures of 1 and 2 have been previously reported, but were reconfirmed in this work. The synthesis and characterization of [{PhB(MeIm)_3}_2Mn]Cl (3b) are also described. These complexes are of interest in that, in contrast to many hexacoordinate (pseudo-octahedral) complexes of Mn(III), they exhibit a low-spin (triplet) ground state, rather than the high-spin (quintet) ground state. Solid-state electronic absorption spectroscopy, SQUID magnetometry, and high-frequency and -field electron paramagnetic resonance (HFEPR) spectroscopy were applied. HFEPR, in particular, was useful in characterizing the S = 1 spin Hamiltonian parameters for complex 1, D = +19.97(1), E = 0.42(2) cm ~(-1), and for 2, D = +15.89(2), E = 0.04(1) cm~(-1). In addition, frequency domain Fourier-transform THz-EPR spectroscopy, using coherent synchrotron radiation, was applied to 1 only and gave results in good agreement with HFEPR. Variable-temperature dc magnetic susceptibility measurements of 1 and 2 were also in good agreement with the HFEPR results. This magnitude of zero-field splitting (zfs) is over 4 times larger than that in comparable hexacoordinate Mn(III) systems with S = 2 ground states. Complexes 3a and 3b (i.e., regardless of counteranion) have a yet much larger magnitude zfs, which may be the result of unquenched orbital angular momentum so that the spin Hamiltonian model is not appropriate. The triplet ground state is rationalized in each complex by ligand-field theory (LFT) and by quantum chemistry theory, both density functional theory and unrestricted Hartree-Fock methods. This analysis also shows that spin-crossover behavior is not thermally accessible for these complexes as solids. The donor properties of the three different scorpionate ligands were further characterized using the LFT model that suggests that the tris(carbene)borate is a strong σ-donor with little or no π-bonding.
机译:已经通过多种物理技术研究了Mn(III)与“蝎形”型配体的三种配合物。络合物为[Tp_2Mn] SbF_6(1),[Tp_2 * Mn] SbF_6(2)和[{PhB(MeIm)_3} _2Mn](CF_3SO_3)(3a),其中Tp- =氢三(吡唑基)硼酸根阴离子, Tp〜(*-)=氢三(3,5-二甲基吡唑基)硼酸根阴离子,PhB(MeIm)_3〜-=苯基三(3-甲基咪唑-2-基)硼酸根阴离子。据报道3a的晶体结构。 1和2的结构以前已经有过报道,但在这项工作中得到了再次确认。还描述了[{PhB(MeIm)_3} _2Mn] Cl(3b)的合成和表征。这些配合物的有趣之处在于,与许多Mn(III)的六配位(拟八面体)配合物相比,它们呈现出低自旋(三重态)基态,而不是高自旋(五重态)基态。应用了固态电子吸收光谱法,SQUID磁力分析法以及高频和场电子顺磁共振(HFEPR)光谱法。 HFEPR特别适用于表征复合物1的S = 1自旋哈密顿量参数,D = +19.97(1),E = 0.42(2)cm〜(-1),对于2,D = +15.89( 2),E = 0.04(1)cm〜(-1)。此外,使用相干同步加速器辐射的频域傅里叶变换THz-EPR光谱仅应用于1,其结果与HFEPR很好。 1和2的可变温度直流磁化率测量值也与HFEPR结果非常吻合。零场分裂(zfs)的大小是S = 2基态的可比六坐标Mn(III)系统的四倍以上。配合物3a和3b(即不考虑抗衡阴离子)的zfs值要大得多,这可能是轨道轨道动量未经猝灭的结果,因此自旋哈密顿量模型不合适。通过配体场理论(LFT)和量子化学理论(包括密度泛函理论和不受限制的Hartree-Fock方法),可以使每个配合物中的三重态基态合理化。该分析还表明,对于这些复合物(固体),热交联行为是不可热获得的。使用LFT模型进一步表征了三种不同的蝎形配体的供体性质,表明三(卡宾)硼酸酯是一个强σ供体,几乎没有π键。

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