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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The synthesis of [FeRu(CO)(2)(mu-CO)(2)(eta-C5H5)(eta-C5Me5)] and convenient entries to its organometallic chemistry
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The synthesis of [FeRu(CO)(2)(mu-CO)(2)(eta-C5H5)(eta-C5Me5)] and convenient entries to its organometallic chemistry

机译:[FeRu(CO)(2)(mu-CO)(2)(eta-C5H5)(eta-C5Me5)]的合成及其有机金属化学的便捷条目

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The synthesis, fluxionality and reactivity of the heterobimetallic complex [FeRu(CO)(2)(mu-CO)(2)(eta-C5H5)(eta-C5Me5)] ( 5) are described. Complex 5 exhibits enhanced photolytic reactivity towards alkynes compared to its homometallic analogues, forming the dimetallacyclopentenone complexes [FeRu(CO)(mu-CO){mu-eta(1):eta(3)-C(O) CR"CR'}(eta-C5H5)( eta-C5Me5)] (9, R' = R" = H; 10, R' = R" = CO2Me; 11, R' = H, R" = CMe2OH). Prolonged photolysis with diphenylethyne gives the dimetallatetrahedrane complex [FeRu(mu-CO)(mu-eta(2):eta(2)-CPhCPh)(eta-C5H5)(eta-C5Me5)] ( 17), which contains the first iron-ruthenium double bond. Complexes containing a number of organic fragments can be synthesised using 9, 10 and 11. Heating a solution of 10 gave the alkenylidene complex [FeRu(CO)(2)(mu-CO){mu-eta(1):eta(1)C= C(CO2Me)(2)}(eta-C5H5)(eta-C5Me5)] (23) through an unusual methylcarboxylate migration. Protonation and then addition of hydride to 9 gives the ethylidene complex [FeRu(CO)(2)(mu-CO)(mu-CHCH3)(eta-C5H5)(eta-C5Me5)] (27) via the ionic vinyl species [FeRu(CO)(2)(mu-CO)(mu-eta(1):eta(2)-CH=CH2)(eta-C5H5)(eta-C5Me5)][BF4] ( 25). Compound 25 exhibits cis/trans isomerisation at room temperature. Protonation of 11 gives the allenyl species [FeRu(CO)(2)(mu-CO)(mu-eta(1):eta(2)CH= C=CMe2)(eta-C5H5)(eta-C5Me5)][BF4] ( 30). Compound 30 exist as three isomers, two cis and one trans. The two cis isomers are shown to be interconverting by sigma-pi isomerisation. The solid state structures of 5, 11, 12, 17, 23, 25 and 30 were established by X-ray crystallography and are discussed.
机译:描述了异双金属配合物[FeRu(CO)(2)(mu-CO)(2)(eta-C5H5)(eta-C5Me5)](5)的合成,通量和反应性。与它的同金属类似物相比,配合物5对炔烃具有增强的光解反应活性,形成双金属环戊烯酮配合物[FeRu(CO)(mu-CO){mu-eta(1):eta(3)-C(O)CR“ CR'} (eta-C5H5)(eta-C5Me5)](9,R′= R″ = H; 10,R′= R″ = CO 2 Me; 11,R′= H,R″ = CMe 2 OH)。用二苯乙炔长时间光解会生成双金属盐四面体络合物[FeRu(mu-CO)(mu-eta(2):eta(2)-CPhCPh)(eta-C5H5)(eta-C5Me5)](17),其中包含第一铁-钌双键。可以使用9、10和11合成包含许多有机片段的配合物。加热10的溶液,得到烯基配合物[FeRu(CO)(2)(mu-CO){mu-eta(1):eta(1 )C = C(CO2Me)(2)}(eta-C5H5)(eta-C5Me5)](23)通过不寻常的甲基羧酸盐迁移。质子化,然后将氢化物加到9中,通过离子乙​​烯基物质[27]得到亚乙基络合物[FeRu(CO)(2)(mu-CO)(mu-CHCH3)(eta-C5H5)(eta-C5Me5)](27) FeRu(CO)(2)(mu-CO)(mu-eta(1):eta(2)-CH = CH2)(eta-C5H5)(eta-C5Me5)] [BF4](25)。化合物25在室温下表现出顺式/反式异构化。 11的质子化得到烯基物质[FeRu(CO)(2)(mu-CO)(mu-eta(1):eta(2)CH = C = CMe2)(eta-C5H5)(eta-C5Me5)] [ BF4](30)。化合物30以三种异构体形式存在,两种为顺式,一种为反式。两种顺式异构体通过sigma-pi异构化相互转化。通过X射线晶体学建立并讨论了5、11、12、17、23、25和30的固态结构。

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