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首页> 外文期刊>Inorganica Chimica Acta >Electron donating substituent effects on redox and spin state properties of iron(II) bis-terpyridyl complexes
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Electron donating substituent effects on redox and spin state properties of iron(II) bis-terpyridyl complexes

机译:给电子取代基对铁(II)双-吡啶基配合物的氧化还原和自旋态性质的影响

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The synthesis of iron(II) terpyridyl (trpy) complexes was achieved with the general formula [Fe(trpy)(2-x)((R)(3)trpy)(x)] (PF6)(2), where R represents CH3O and (Et)(2)N. Both the methoxy and diethylamino substituents are electron donating in nature, where the latter is a new derivative of terpyridine. Cyclic voltammetry was used to assess the substituents' influence on the Fe(III/II) couple in which an average shift in potential (Delta E-1/2) of 0.06 volts per methoxy group, and 0.18 volts for each diethylamino group, was exhibited. Solution magnetic susceptibility measurements were carried out with standard NMR methodology. All of the Fe(II) complexes, except [Fe((Et2N)(3)trpy)(2)](2+) exhibited an expected low spin (S = 0) behavior. The [Fe((Et2N)(3)trpy)(2)](2+) complex was observed to have a room temperature paramagnetic moment (mu(eff)) of 1.6 BM indicating thermal population of the high spin (S=2) state. Since [Co(trpy)(2)](2+) is known to be near the spin crossover (mu(eff) = 3.2 BM), the [Co((CH3O)(3)trpy)(2)](2+) was prepared in order to measure the influence methoxy substituents would have on mu(eff); a significant shift was observed (mu(eff) = 4.2 BM). The results of this study indicate that electron donating para-substituents on terpyridine affect the metal-ligand pi-bonding interactions (by increasing the ligand's pi-donor properties at the expense of weakening its pi-acceptor capabilities) to a greater extent than the sigma-interactions. This results in a decrease of the ligand held splitting. (C) 1998 Elsevier Science S.A. All rights reserved. [References: 27]
机译:通式为[Fe(trpy)(2-x)((R)(3)trpy)(x)](PF6)(2)的三价铁(II)吡啶基(trpy)配合物的合成代表CH3O和(Et)(2)N。甲氧基和二乙氨基取代基在本质上都是给电子体,其中后者是叔吡啶的新衍生物。循环伏安法用于评估取代基对Fe(III / II)对的影响,其中Fe(III / II)对的平均电势偏移(Delta E-1 / 2)为每个甲氧基0.06伏,每个二乙氨基为0.18伏。展出。溶液磁化率的测量是使用标准NMR方法进行的。除[Fe((Et2N)(3)trpy)(2)](2+)外,所有Fe(II)配合物均表现出预期的低自旋(S = 0)行为。观察到[Fe((Et2N)(3)trpy)(2)](2+)络合物的室温顺磁矩(mu(eff))为1.6 BM,表明高自旋温度(S = 2 )状态。由于已知[Co(trpy)(2)](2+)接近自旋交叉(mu(eff)= 3.2 BM),因此[Co((CH3O)(3)trpy)(2)](2为了测量甲氧基取代基对mu(eff)的影响,制备了+);观察到显着变化(mu(eff)= 4.2 BM)。这项研究的结果表明,在比吡啶上给电子的对位取代基对金属-配体pi-键相互作用的影响(通过增加配体的pi-供体性质,以削弱其pi-受体能力为代价)比sigma更大。 -互动。这导致配体保持分裂的减少。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:27]

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