首页> 外文期刊>Inorganica Chimica Acta >Study of the O-Ru-N bonding in trans-[Ru(NH3)(4)(SO4)L](+) complexes (L = imidazole, histidine and substituted pyridines): a X-ray, EPR, spectroscopic and theoretical MO study
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Study of the O-Ru-N bonding in trans-[Ru(NH3)(4)(SO4)L](+) complexes (L = imidazole, histidine and substituted pyridines): a X-ray, EPR, spectroscopic and theoretical MO study

机译:反式[Ru(NH3)(4)(SO4)L](+)配合物(L =咪唑,组氨酸和取代的吡啶)中O-Ru-N键的研究:X射线,EPR,光谱和理论分析MO学习

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Spectroscopic studies on trans-[Ru(NH3)(4)(SO4)L](+) where L = imidazole, histidine, pyridine and substituted pyridines were undertaken to understand the effect of various ligands on the Ru-N bonding in these complexes. The sulfate complexes show two major bands in the 250-270 and 310-350 nm region of the UY-Vis spectrum. Based on quantum chemical calculations the lowest energy band has been assigned to a LMCT (SO42- --> Ru-III) transition. The energy of the LMCT transition decreases as the order of the axial ligand L basicity: Him > L-hist > 4-NH2-py > 4-Cl-py > 4-pic > py > nia > 4-Cn-py > isn > pz: EPR spectra give only two g values showing that the two LUMO containing the metal d(pi) orbitals are degenerate and the energy separation between the LUMO and HOMO, calculated from the g values correlates linearly with the charge transfer energy and electrochemical properties. These correlations suggest extensive pi donation from L to the Ru(III) d orbitals. An X-ray study of the 4-pic complex shows a bent S-O-Ru bond of 127.5degrees and MO calculations for three other complexes predict similar angles due to extensive sigma and pi bonding interaction between the sulfate oxygen and the Ru(III) ion. Surprisingly, the MO calculations do not predict the observed degeneracy in the LUMO orbital found by EPR studies. We shall argue that these discrepancies can be reconciled by insisting that the orientation of the L ring be coplanar with the S-O-Ru plane as is the case in the one X-ray study. (C) 2004 Elsevier B.V. All rights reserved.
机译:进行了反式-[Ru(NH3)(4)(SO4)L](+)的光谱研究,其中L =咪唑,组氨酸,吡啶和取代的吡啶,以了解这些配体中各种配体对Ru-N键合的影响。硫酸盐配合物在UY-Vis光谱的250-270和310-350 nm区域显示两个主要谱带。根据量子化学计算,最低能带已分配给LMCT(SO42 ---> Ru-III)跃迁。 LMCT跃迁的能量按轴向配体L碱度的顺序降低:Him> L-hist> 4-NH2-py> 4-Cl-py> 4-pic> py> nia> 4-Cn-py> is > pz:EPR光谱仅给出两个g值,表明包含金属d(pi)轨道的两个LUMO简并,并且从g值计算得出的LUMO和HOMO之间的能级与电荷转移能和电化学性质线性相关。这些相关性表明从L到Ru(III)d轨道的大量pi捐赠。对4-pic配合物的X射线研究表明,弯曲的SO-Ru键为127.5度,而其他三个配合物的MO计算结果也预测了相似的角度,这是由于硫酸氧和Ru(III)离子之间存在广泛的sigma和pi键相互作用。出人意料的是,MO计算并不能预测EPR研究发现的LUMO轨道中观察到的简并性。我们将争辩说,可以像坚持一项X射线研究一样,通过坚持认为L环的取向与S-O-Ru平面共面来解决这些差异。 (C)2004 Elsevier B.V.保留所有权利。

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