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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electronic interactions in oligoferrocenes with cationic, neutral and anionic four-coordinate boron bridges
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Electronic interactions in oligoferrocenes with cationic, neutral and anionic four-coordinate boron bridges

机译:低聚二茂铁与阳离子,中性和阴离子四坐标硼桥的电子相互作用

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Dinuclear and trinuclear ferrocene complexes {[Fc(2)BMe(2)] Li, [Fc-BMe2-fc-BMe2-Fc] Li-2, Fc(2)B(pyind), [Fc(2)B(bipy)] PF6, [Fc-B(bipy)-fc-B(bipy)-Fc](PF6)(2)} bearing anionic, uncharged, and cationic four-coordinate boron bridges have been synthesized (Fc: ferrocenyl; fc: 1,1'-ferrocenylene; pyind: 5-fluoro-2-(2'-pyridyl) indolyl; bipy: 2,2'-bipyridyl). The molecular structures of [Fc(2)BMe(2)] Li(12-crown-4)(2), [Fc-BMe2-fc-BMe2-Fc](Li(12-crown-4)(2))(2), Fc(2)B(pyind), and [Fc(2)B(bipy)] PF6 were determined by X-ray crystallography. The anionic aggregates [Fc(2)BMe(2)](-) and [Fc-BMe2-fc-BMe2-Fc](2-) are very sensitive to air and moisture whereas bromide salts of their cationic counterparts [Fc(2)B(bipy)](+) and [Fc-B(bipy)-fc-B(bipy)-Fc](2+) may be dissolved in water without decomposition. Cyclic voltammograms of the diferrocene species show two well-resolved one-electron transitions separated by 0.21 V ([Fc(2)BMe(2)] Li; Edegrees =- 0.43 V, - 0.64 V; vs. FcH/FcH(+)), 0.18 V (Fc(2)B(pyind); Edegrees' =- 0.03 V, - 0.21 V), and 0.16 V ([Fc(2)B(bipy)] PF6; Edegrees' =+ 0.23 V, + 0.07 V), which indicates electronic interactions between the two ferrocenyl substituents. Two redox waves with an intensity ratio of 1 : 2 are observed in the cyclic voltammograms of the trinuclear derivatives [Fc-BMe2-fc-BMe2-Fc] Li-2 and [Fc-B(bipy)-fc-B(bipy)-Fc](PF6)(2). In the case of the BMe2-bridged species, the electrochemically unique central ferrocenylene unit is oxidized at a much more cathodic potential value (Edegrees' =- 1.21 V) than the two terminal ferrocenyl substituents (Edegrees' =- 0.51 V). The opposite is true in the case of the B(bipy)-bridged trimer where oxidation of the terminal ferrocenyl groups (Edegrees' =+ 0.03 V) precedes oxidation of the internal iron atom (Edegrees' =+ 0.26 V). The Fe(II)/ Fe(III) redox potentials of the mono- and dianionic species differ to a much larger extent from the redox potential of parent ferrocene (Edegrees' = 0 V) than the Edegrees' values of the corresponding mono- and dicationic derivatives. Apart from electrostatic interactions, the electrochemical properties of BMe2- and B(bipy)-bridged oligoferrocenes are determined by the pronounced positive inductive effect of triorganoborate substituents together with positive sigma/pi* hyperconjugation on the one hand and ferrocene-to-B(bipy) charge transfer on the other.
机译:双核和三核二茂铁配合物{[Fc(2)BMe(2)] Li,[Fc-BMe2-fc-BMe2-Fc] Li-2,Fc(2)B(pyind),[Fc(2)B(bipy )]已合成带有阴离子,不带电和阳离子四坐标硼桥的PF6,[Fc-B(bipy)-fc-B(bipy)-Fc](PF6)(2)}(Fc:二茂铁基; fc: 1,1'-二茂铁基;吡啶:5-氟-2-(2'-吡啶基)吲哚基;联吡啶:2,2'-联吡啶基)。 [Fc(2)BMe(2)] Li(12-crown-4)(2),[Fc-BMe2-fc-BMe2-Fc](Li(12-crown-4)(2))的分子结构通过X射线晶体学测定(2),Fc(2)B(pyind)和[Fc(2)B(bipy)] PF6。阴离子聚集体[Fc(2)BMe(2)](-)和[Fc-BMe2-fc-BMe2-Fc](2-)对空气和水分非常敏感,而其阳离子对应物的溴化物盐[Fc(2) )B(bipy)](+)和[Fc-B(bipy)-fc-B(bipy)-Fc](2+)可以溶于水而不会分解。二茂铁物种的循环伏安图显示了两个良好解析的单电子跃迁,相距0.21 V([Fc(2)BMe(2)] Li; E度=-0.43 V,-0.64 V; vs. FcH / FcH(+) ),0.18 V(Fc(2)B(pyind); Edegrees =-0.03 V,-0.21 V)和0.16 V([Fc(2)B(bipy)] PF6; Edegrees = + 0.23 V,+ 0.07 V),表明两个二茂铁基取代基之间的电子相互作用。在三核衍生物[Fc-BMe2-fc-BMe2-Fc] Li-2和[Fc-B(bipy)-fc-B(bipy)的循环伏安图中观察到强度比为1:2的两个氧化还原波-Fc](PF6)(2)。在BMe 2桥接的物种的情况下,电化学上独特的中心二茂铁单元被氧化,其阴极电势值(E's =-1.21 V)比两个末端二茂铁基取代基(Edegrees =-0.51 V)高得多。在B(双联)桥的三聚体的情况下相反,其中末端二茂铁基的氧化(E度= + 0.03V)先于内部铁原子的氧化(E度= + 0.26V)。单价和双价离子物种的Fe(II)/ Fe(III)氧化还原电位与母体二茂铁的氧化还原电位(Edegrees = 0 V)的差异远大于相应单价和二价茂铁的Edegrees值。药用衍生物。除静电相互作用外,BMe2-和B(bipy)桥联的低二茂铁的电化学性质还取决于三有机硼酸酯取代基的显着正感应效应以及一方面的正σ/ pi *超共轭和二茂铁与B(bipy) )费用转移。

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