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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 >Detection and measurement of noncoincidence between the principal axes of the g-matrix and zero-field splitting tensor using multifrequency powder EPR spectroscopy: Application to cis-[(NH3)(2)Pt(1-MeU)(2)Cu(H2O)(2)](SO4)center dot 4.5H(2)O (1-MeU =
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Detection and measurement of noncoincidence between the principal axes of the g-matrix and zero-field splitting tensor using multifrequency powder EPR spectroscopy: Application to cis-[(NH3)(2)Pt(1-MeU)(2)Cu(H2O)(2)](SO4)center dot 4.5H(2)O (1-MeU =

机译:使用多频粉末EPR光谱检测和测量g矩阵主轴与零场分裂张量之间的不重合:在顺式[[NH3)(2)Pt(1-MeU)(2)Cu(H2O)中的应用(2)](SO4)中心点4.5H(2)O(1-MeU =

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Multifrequency continuous wave EPR spectra (4-34 GHz) on a powder of the title compound are consistent with a spin-triplet state. This arises from interaction between centrosymmetrically related pairs of copper(II) ions in the solid. The spectra at all frequencies have been simulated with a single set of spin-Hamiltonian parameters. The results show that there is noncoincidence between the principal axes of the g-matrices on each copper center and those of the zero-field splitting (D) tensor, This noncoincidence is a single rotation of 33degrees +/- 2degrees. The parameters from the powder spectra have been verified by a subsequent single-crystal EPR study which yielded the spin-Hamiltonian parameters g(xx) = 2.074, g(yy) = 2.093, g(zz) = 2.385, D-XX = +/-0.0228 cm(-1), D-YY = +/-0.0211 cm(-1), D-ZZ = -/+0.0439 cm(-1) with Euler angles of alpha = 179degrees, chi = 33.4degrees, and gamma = 328degrees. Analysis of the zero-field splitting tensor in terms of exchange indicates that the interaction between the pairs of copper(11) ions is almost entirely dipolar in origin, This study shows that multifrequency EPR spectroscopy on powders, coupled with spectrum simulation, can detect and measure noncoincidence between the principal axes of the g-matrix and zero-field splitting tensor, and does not necessarily require the presence of metal hyperfine interactions. [References: 37]
机译:标题化合物粉末上的多频连续波EPR光谱(4-34 GHz)与自旋三重态一致。这是由于固体中铜(II)离子的中心对称相关对之间的相互作用引起的。使用一组自旋哈密顿参数对所有频率下的频谱进行了仿真。结果表明,每个铜中心上的g矩阵的主轴与零场分裂(D)张量的主轴之间不重合,这种不重合是33度+/- 2度的单旋转。来自粉末光谱的参数已通过随后的单晶EPR研究进行了验证,该研究得出了自旋哈密顿参数g(xx)= 2.074,g(yy)= 2.093,g(zz)= 2.385,D-XX = + /-0.0228 cm(-1),D-YY = +/- 0.0211 cm(-1),D-ZZ =-/ + 0.0439 cm(-1),欧拉角为alpha = 179度,chi = 33.4度,并且伽马= 328度。从交换角度对零场分裂张量进行分析表明,成对的铜(11)离子对之间的相互作用几乎完全是偶极的。这项研究表明,粉末的多频EPR光谱结合光谱模拟可以检测并检测测量g矩阵的主轴与零场分裂张量之间的不一致,并且不一定要求存在金属超精细相互作用。 [参考:37]

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