首页> 外文期刊>Journal of the American Chemical Society >EPR AND NMR SPECTRA AS PROBES OF SPIN-DENSITY DISTRIBUTION IN HETEROCYCLIC LIGANDS COORDINATED IN TRANS-[L(IM)(NH3)(4)RU-III] - IMPLICATIONS FOR LONG-RANGE ELECTRON TRANSFER - CRYSTAL STRUCTURE OF TRANS-[(IM)(2)(NH3)(4)RU]CL-3-CENTER-DOT-H2O
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EPR AND NMR SPECTRA AS PROBES OF SPIN-DENSITY DISTRIBUTION IN HETEROCYCLIC LIGANDS COORDINATED IN TRANS-[L(IM)(NH3)(4)RU-III] - IMPLICATIONS FOR LONG-RANGE ELECTRON TRANSFER - CRYSTAL STRUCTURE OF TRANS-[(IM)(2)(NH3)(4)RU]CL-3-CENTER-DOT-H2O

机译:EPR和NMR谱作为反式-[L(IM)(NH3)(4)RU-III]配位的杂环化合物中自旋密度分布的问题-对大范围电子转移-晶体结构的影响)(2)(NH3)(4)RU] CL-3-CENTER-DOT-H2O

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Spectroscopic studies of trans-[(L)(Im)(NH3)(4)Ru-III], where Lm = imidazole and L = isonicotinamide (Isn), pyridine (Py), Im, NH3, Cl-, and SO42-, indicate that pi-bonding by the trans ligand significantly affects mixing of the d(pi)-pi (imidazole) orbitals. Analysis of the EPR spectra provides a description of the frontier d(pi) orbitals involved in electron transfer and estimates of Delta and V (the tetragonal and rhombic distortion parameters, respectively), all of which vary with the pi-donor abilities of L. As Delta and V are of the same magnitude as the the spin-orbit coupling parameter, lambda, there is extensive spin-orbit mixing of the d(xz) and d(yz) and (to a lesser extent) the d(xy) orbitals. Reduction potentials and energies of imidazole --> Ru-III charge transfer transitions correlate linearly with the pi-donor/acceptor ability of L so that a correlation is also evident between these properties and the ligand field splitting of the t(2g) manifold, which leads to an unsuspected correlation between the difference between the two largest g values, Delta g(12), and E degrees. Electronic perturbations appear to be transmitted to C5 on the imidazole ring, which is the site linked to Ru-modified proteins used as probes of long-range electron transfer. This implies that variations of the ligand in the trans position to modify the E degrees for the Ru-III/II couple can also affect the superexchange coupling involved in electron transfer. trans-[(Im)(2)(NH3)(4)Ru-III]Cl-3 . H2O crystallizes in the monoclinic space group, P2(1) (No. 14), with cell parameters a = 18.111(9) Angstrom, b = 7.187(2) Angstrom, c = 14.352(7) Angstrom, beta = 113.26(4)degrees, and Z = 4 and exhibits an eclipsed conformation of the imidazole rings. MM2 and IEHT calculations suggest why the eclipsed conformation is slightly favored over the staggered and that the imidazole rings freely rotate in solution. [References: 47]
机译:反式-[(L)(Im)(NH3)(4)Ru-III]的光谱研究,其中Lm =咪唑,L =异烟酰胺(Isn),吡啶(Py),Im,NH3,Cl-和SO42- ,表明反式配体的π键显着影响d(pi)-pi(咪唑)轨道的混合。 EPR光谱的分析提供了电子转移所涉及的前沿d(pi)轨道的描述以及Delta和V的估计值(分别是四边形和菱形畸变参数),所有这些都随L的pi供体能力而变化。由于Delta和V的大小与自旋轨道耦合参数lambda相同,因此d(xz)和d(yz)与d(xy)的自旋轨道混合很大轨道。咪唑的还原电势和能量-> Ru-III电荷转移跃迁与L的pi-供体/受体能力线性相关,因此这些性质与t(2g)流形的配体场分裂之间也存在明显的相关性,这导致两个最大g值之间的差Delta g(12)和E度之间的关系毫无疑问。电子扰动似乎传递给咪唑环上的C5,咪唑环是与Ru修饰的蛋白质(用作远程电子转移探针)相连的位点。这暗示着配体在反式位置上的变化以修饰Ru-III / II对的E度也会影响电子转移中涉及的超交换耦合。反式-[(Im)(2)(NH3)(4)Ru-III] Cl-3。 H2O在单斜空间群P2(1)/ n(第14号)中结晶,单元参数a = 18.111(9)埃,b = 7.187(2)埃,c = 14.352(7)埃,beta = 113.26 (4)度,Z = 4,并呈现出咪唑环的黯淡构象。 MM2和IEHT计算表明,为什么偏光的构象比交错的略偏,而且咪唑环在溶液中自由旋转。 [参考:47]

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