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EPR studies of oxo-molybdemun(V) complexes with sulfur donor ligands: Synthesis, X-band EPR spectra and approaches to single crystal host lattices.

机译:具有硫供体配体的氧-钼(V)配合物的EPR研究:合成,X波段EPR光谱和单晶主晶格的制备方法。

摘要

A series of well characterized mononuclear oxo-molybdenum(V) complexes with bidentate sulfur donor ligands, which possess the minimal structural feature for the Mo(V) state of the proposed molybdenum cofactor (Moco) have been investigated by X-band electron paramagnetic resonance (EPR) spectroscopy in fluid and frozen solutions. The complete EPR parameters (anisotropic g(i) and A(^(95,97)Mo) hyperfine splittings) were obtained by rigorous spectral simulations using the QPOW program. Comparison of the EPR parameters of LMoO(bdt) and LMoO{S(CH₂)ₓ)S}, x = 2, 3, 4 complexes reveals similar anisotropic g and A(^(95,97)Mo) values, and indicates that it is the sulfur ligation rather than the chelate skeleton that is the primary factor dictating these parameters. Fenske-Hall calculations show that the oxo-molybdenum(V) complexes of the type LMoO{S(C)ₓS}, x = 1,2 have similar electronic structures and indicate that the first electronic transition will be a charge transfer (CT) transition from Sπ to d(xy). Such a low lying charge transfer band accounts for one of the g(i) values being greater than the free electron value (gₑ = 2.0023) for complexes LMoO(bdt) and LMoO{S(CH₂)ₓ)S}, x = 2, 3, 4. The EPR spectrum of the low and high pH forms of sulfite oxidase have been reinvestigated due to its qualitative similarities with our well characterized model compounds. Complete EPR parameters, including anisotropic A(^(95,97)Mo) hyperfine splittings were reported for the first time for the low and high pH forms of the sulfite oxidase. Comparison of the EPR parameters for the model compounds to those of the low and high pH forms of sulfite oxidase reveals that these minimal structural models for Moco mimic the anisotropic g values and A₁ values, but the A₂ and A₃ components in the models are distinctly different from those in the enzyme. Preliminary single crystal EPR studies on LMoO(bdt) doped into the diamagnetic LMo(NO(bdt) and LMo(NO)(tdt) host lattices are reported. A series of mononuclear and binuclear molybdenum complexes of the neutral facially coordinating hydrotris(3,5-dimethyl-1-pyrazolyl)methane (L*) ligand have been prepared and characterized by X-ray crystallography and spectroscopic techniques. An unusual feature of the chemistry of L*, compared to other related facially coordinating tridentate nitrogen ligands, is the facile formation of novel unsymmetrical di-μ-oxo dimers such as L*Mo₂O₄Cl₂, which contain both five-coordinate and six-coordinate oxo-molybdenum centers.
机译:X波段电子顺磁共振研究了一系列具有良好特征的具有双齿硫供体配体的单核氧-钼(V)配合物,该化合物具有拟议的钼辅因子(Moco)的Mo(V)态的最小结构特征。 (EPR)光谱在流体和冷冻溶液中。使用QPOW程序通过严格的光谱模拟获得了完整的EPR参数(各向异性g(i)和A(^(95,97)Mo)超精细分裂)。比较LMoO(bdt)和LMoO {S(CH 2)3)S}(x = 2、3、4个配合物)的EPR参数,得出相似的各向异性g和A(^(95,97)Mo)值,并表明决定这些参数的主要因素是硫的连接而不是螯合的骨架。 Fenske-Hall计算表明,LMoO {S(C)ₓS}(x = 1,2)类型的氧钼(V)配合物具有相似的电子结构,并表明第一个电子跃迁将是电荷转移(CT)从Sπ过渡到d(xy)。对于复合物LMoO(bdt)和LMoO {S(CH 2)3)S},如此低的电荷转移带占g(i)值之一大于自由电子值(gₑ= 2.0023),x = 2 ,3,4。由于其与我们特征鲜明的模型化合物的定性相似性,已对低和高pH形式的亚硫酸盐氧化酶的EPR谱进行了重新研究。对于亚硫酸盐氧化酶的低和高pH形式,首次报道了完整的EPR参数,包括各向异性的A(^(95,97)Mo)超细分裂。将模型化合物的EPR参数与亚硫酸盐氧化酶的低和高pH形式的EPR参数进行比较后发现,这些最小的Moco结构模型模仿了各向异性的g值和A₁值,但是模型中的A2和A₃成分明显不同从那些酶。报道了对掺入抗磁性LMo(NO(bdt)和LMo(NO)(tdt)主晶格中的LMoO(bdt)的单晶EPR的初步研究。一系列中性的面部配位水合三价钼的单核和双核钼配合物(3,制备了5-二甲基-1-吡唑基)甲烷(L *)配体,并通过X射线晶体学和光谱技术对其进行了表征,与其他相关的面部配位三齿氮配体相比,L *的化学性质与众不同。容易形成新颖的不对称二-氧代二聚体,例如L * Mo 2 O 3 Cl 2,它同时包含五坐标和六坐标的氧钼中心。

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    Dhawan Ish Kumar.;

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  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 en
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