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首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis of 2-picolyl functionalized eta(5)-cyclopentadienyl derivatives of rhodium(I) and iridium(I) and preliminary study of their reaction with ruthenium(II) for assembling hetero-bimetallic complexes
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Synthesis of 2-picolyl functionalized eta(5)-cyclopentadienyl derivatives of rhodium(I) and iridium(I) and preliminary study of their reaction with ruthenium(II) for assembling hetero-bimetallic complexes

机译:铑(I)和铱(I)的2-吡啶甲基官能化的eta(5)-环戊二烯基衍生物的合成及其与钌(II)的反应用于组装杂双金属配合物的初步研究

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摘要

The 2-picolylcyclopentadienyl derivatives of rhodium(I) and iridium(I) of formula [M{eta(5)-C5H4(2-CH2C5H4N)}(eta(4)-C8H12)] (3) (M = Rh) and (4) (M = Ir) are obtained in good yields by reacting 2-picolylcyclopentadienyllithium (7) with [RhCl(eta(4)-C8H12)](2) and [IrCl(eta(4)-C8H12)](2), respectively. The corresponding dicarbonyl derivatives, [M{eta(5)-C5H4(2-CH2C5H4N)}(CO)(2)] (5) (M=Rh) and 6 (M = It), are obtained in good yields by reacting 2-picolylcyclopentadienylthallium(l) (8) with [RhCl(CO)(2)](2) and [IrCl(C5H5N)(CO)(2)], respectively. 5 has already been reported in the literature. The new complexes were characterized by elemental analysis, mass spectrometry, H-1 NMR, FT-IR, and UY-Vis (210-330 nm) spectroscopy. The UV-Vis spectra indicate the existence of some electronic interaction between the 2-picolinic chromophore and the cyclopentadienyl-metal moiety. The study of the electrochemical behaviour of 3-6 by cyclic voltammetry (CV) allows the interpretation of the electrode processes and gives information about the location of the redox sites. Moreover, various synthetic strategies were tested in order to try to coordinate the complexes 3-6 to a ruthenium(II) centre, but most of them failed. Instead, the hetero-bimetallic complex bis(2,2'-bipyridine)[(eta(5)-2-picolylcyclopentadienyl)(eta(4)-cycloocta-1,5-diene)rhodium(I)]chlororuthenium(II)-(hexafluorophosphate) (13), was obtained, although in poor yields (10%), by reacting the nitrosyl complex [RuCl(bipy)(2)(NO)][PF6](2) 14 (bipy = 2,2'-bipyridine) first with potassium azide and then with the rhodium(l) complex 3. The analogous complex bis(2,2'-bipyridine)(2-picoline)chlororuthenium(11)-(hexafluorophosphate) (15), that carries a ruthenium-bonded 2-picoline molecule instead of 3, has prepared in the same way. 13 and 15 were characterized by elemental analysis, mass spectrometry, and H-1 NMR. (c) 2005 Elsevier B.V. All rights reserved.
机译:式[M {eta(5)-C5H4(2-CH2C5H4N)}(eta(4)-C8H12)](3)(M = Rh)的铑(I)和铱(I)的2-吡啶甲基环戊二烯基衍生物(4)通过使2-吡啶基环戊二烯基锂(7)与[RhCl(eta(4)-C8H12)](2)和[IrCl(eta(4)-C8H12)](2)反应以高收率获得(M = Ir) ), 分别。相应的二羰基衍生物[M {eta(5)-C5H4(2-CH2C5H4N)}(CO)(2)](5)(M = Rh)和6(M = It)通过反应获得高收率2-吡啶甲基环戊二烯基al(1)(8)分别带有[RhCl(CO)(2)](2)和[IrCl(C5H5N)(CO)(2)]。文献中已经报道了5种。通过元素分析,质谱,H-1 NMR,FT-IR和UY-Vis(210-330 nm)光谱对新配合物进行表征。 UV-Vis光谱表明2-吡啶甲酸生色团和环戊二烯基-金属部分之间存在一些电子相互作用。通过循环伏安法(CV)研究3-6的电化学行为,可以解释电极过程并提供有关氧化还原位点位置的信息。此外,测试了各种合成策略,以尝试将3-6配合物与钌(II)中心配合,但大多数失败。相反,杂双金属配合物双(2,2'-联吡啶)[(eta(5)-2-picolylcyclopentadienyl)(eta(4)-cycloocta-1,5-diene)铑(I)]氯钌(II)通过使亚硝酰基复合物[RuCl(bipy)(2)(NO)] [PF6](2)14(bipy = 2,2)与亚硝酰基配合物反应,虽然收率很低(10%),但仍获得了-(六氟磷酸盐)(13)。 '-联吡啶)首先与叠氮化钾,然后与铑(l)配合物3结合。类似的配合物bis(2,2'-联吡啶)(2-甲基吡啶)氯钌(11)-(六氟磷酸盐)(15)钌键合的2-picoline分子代替3,以相同的方式制备。通过元素分析,质谱和H-1 NMR表征13和15。 (c)2005 Elsevier B.V.保留所有权利。

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