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Heterometallic boride clusters of group 6 and 9 transition metals

机译:第6族和第9族过渡金属的杂金属硼化物簇

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Thermolysis of [Ru-3(CO)(12)] with an in-situ generated intermediate, obtained from the reaction of [Cp*MoCl4] and [LiBH4.THFI, led to the formation of [{Cp*Mo(CO)(2)}(mu(4)-13){Ru(CO)(3)}(3)(mu-H)(2)] 2 and RCP*Mo(CO](2)(mu(4)-B){RII(CO)(3)](2)(mu-H), 3 (CP* = eta(5)-C5Me5). In a similar fashion, when [Ru-3(CO)(12)] was thermalized with [(Cp*Rh)2B2H61, obtained from a fast metathesis reaction of [Cp*RhCl2](2), 4 and [LiBH4.THFI, yielded a novel heterometallic boride cluster [(Cp*Rh)(mu-B){Ru(CO)(3)}(4){RuH(CO)(2)}], 5. Both compounds 2 and 3 can be described as 50 -cluster valence electron (cve) hetero-metallic boride clusters, in which the boron atom is in semi -interstitial position of a M4 -butterfly geometry. Compound 5 contains 86 cluster valence -electrons, in which the boron atom is inside of an octahedral hole composed of one rhodium and five ruthenium atoms. Computational studies on the ground of density functional theory has been undertaken to analyze the bonding of 2, 3 and 5. The structural optimization yields geometries in agreement with the structure determinations and computed B-11 chemical shifts accurately reflect the observed shifts. The molecular orbital analysis of them shows that all the valence orbitals of boron have been participated in bonding and therefore provides the "encapsulation" picture of the boron atom. All, B-11, and C-13 NMR s the compounds have been characterized by IR and 1Hpectroscopy, and the geometries of the structures were unequivocally established by crystallographic analyses of compounds 2, 3 and 5. (C) 2016 Published by Elsevier B.V.
机译:[Ru-3(CO)(12)]与由[Cp * MoCl4]和[LiBH4.THFI的反应获得的原位生成的中间体一起热解,导致形成[{Cp * Mo(CO) (2)}(mu(4)-13){Ru(CO)(3)}(3)(mu-H)(2)] 2和RCP * Mo(CO](2)(mu(4)- B){RII(CO)(3)](2)(mu-H),3(CP * = eta(5)-C5Me5)。类似地,当[Ru-3(CO)(12)]用[(Cp * RhCl2)(2),4和[LiBH4.THFI]的快速复分解反应获得的[(Cp * Rh)2B2H61进行热化,得到了新型的杂金属硼化物簇[(Cp * Rh)(mu-B ){Ru(CO)(3)}(4){RuH(CO)(2)}],5。化合物2和3均可描述为50簇价电子(cve)杂金属硼化物簇,化合物5包含86个簇价电子,其中硼原子在一个由一个铑和五个钌原子组成的八面体孔内,其中硼原子位于M4蝶形几何体的半间隙位置。密度泛函理论的基础已被用来分析2、3和5.结构优化产生与结构确定一致的几何形状,并且计算出的B-11化学位移准确反映了观察到的位移。它们的分子轨道分析表明,硼的所有价态轨道均已参与键合,因此提供了硼原子的“包封”图。所有化合物的B-11和C-13 NMR都已通过IR和1H光谱进行了表征,并且结构的几何形状通过化合物2、3和5的晶体学分析明确确定。(C)2016年由Elsevier B.V.

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