Fernández Rafael, Grirrane Abdessamad, Resa Irene, Rodríguez Amor, Carmona Ernesto, Alvarez Eleuterio, Gutiérrez-Puebla Enrique, Monge Angeles, López del Amo Juan Miguel, Limbach Hans-Heinrich, Lledós Agustí, Maseras Feliu, del Río Diego
Instituto de Investigaciones Químicas, Departamento de Química Inorgánica, Universidad de Sevilla-Consejo Superior de Investigaciones Científicas, Avenida Américo Vespucio 49, 41092 Sevilla, Spain.
Chemistry. 2009;15(4):924-35. doi: 10.1002/chem.200801917.
New zincocenes [ZnCp'(2)] (2-5) with substituted cyclopentadienyl ligands C(5)Me(4)H, C(5)Me(4)tBu, C(5)Me(4)SiMe(2)tBu and C(5)Me(4)SiMe(3), respectively, have been prepared by the reaction of ZnCl(2) with the appropriate Cp'-transfer reagent. For a comparative structural study, the known [Zn(C(5)H(4)SiMe(3))(2)] (1), has also been investigated, along with the mixed-ring zincocenes [Zn(C(5)Me(5))(C(5)Me(4)SiMe(3))] (6) and [Zn(C(5)Me(5))(C(5)H(4)SiMe(3))] (7), the last two obtained by conproportionation of [Zn(C(5)Me(5))(2)] with 5 or 1, as appropriate. All new compounds were characterised by NMR spectroscopy, and by X-ray methods, with the exception of 7, which yields a side-product (C) upon attempted crystallisation. Compounds 5 and 6 were also investigated by (13)C CPMAS NMR spectroscopy. Zincocenes 1 and 2 have infinite chain structures with bridging Cp' ligands, while 3 and 4 exhibit slipped-sandwich geometries. Compounds 5 and 6 have rigid, eta(5)/eta(1)(sigma) structures, in which the monohapto C(5)Me(4)SiMe(3) ligand is bound to zinc through the silyl-bearing carbon atom, forming a Zn--C bond of comparable strength to the Zn--Me bond in ZnMe(2). Zincocene 5 has dynamic behaviour in solution, but a rigid eta(5)/eta(1)(sigma) structure in the solid state, as revealed by (13)C CPMAS NMR studies, whereas for 6 the different nature of the Cp' ligands and of the ring substituents of the eta(1)-Cp' group (Me and SiMe(3)) have permitted observation for the first time of the rigid eta(5)/eta(1) solution structure. Iminoacyl compounds of composition [Zn(eta(5)-C(5)Me(4)R)(eta(1)-C(NXyl)C(5)Me(4)R)] resulting from the reactions of some of the above zincocenes and CNXyl (Xyl=2,6-dimethylphenylisocyanide) have also been obtained and characterised.
分别通过氯化锌(ZnCl₂)与合适的环戊二烯基转移试剂反应,制备了带有取代环戊二烯基配体C₅Me₄H、C₅Me₄tBu、C₅Me₄SiMe₂tBu和C₅Me₄SiMe₃的新型二茂锌[ZnCp'(₂)](2 - 5)。为了进行比较结构研究,还对已知的[Zn(C₅H₄SiMe₃)(₂)](1)以及混合环二茂锌[Zn(C₅Me₅)(C₅Me₄SiMe₃)](6)和[Zn(C₅Me₅)(C₅H₄SiMe₃)](7)进行了研究,后两者分别通过[Zn(C₅Me₅)(₂)]与5或1(视情况而定)的归中反应得到。除7之外,所有新化合物均通过核磁共振光谱和X射线方法进行了表征,7在尝试结晶时会产生副产物(C)。化合物5和6还通过¹³C交叉极化魔角旋转核磁共振光谱进行了研究。二茂锌1和2具有由桥连Cp'配体构成的无限链结构,而3和4呈现滑移夹心几何构型。化合物5和6具有刚性的η⁵/η¹(σ)结构,其中单齿的C₅Me₄SiMe₃配体通过含硅烷基的碳原子与锌结合,形成强度与ZnMe₂中的Zn - Me键相当的Zn - C键。通过¹³C交叉极化魔角旋转核磁共振研究表明,二茂锌5在溶液中具有动态行为,但在固态时具有刚性的η⁵/η¹(σ)结构,而对于6,Cp'配体和η¹ - Cp'基团的环取代基(Me和SiMe₃)的不同性质使得首次观察到刚性的η⁵/η¹溶液结构。还获得并表征了由上述一些二茂锌与CNXyl(Xyl = 2,6 - 二甲基苯基异氰化物)反应生成的组成式为[Zn(η⁵ - C₅Me₄R)(η¹ - C(NXyl)C₅Me₄R)]的亚氨基酰基化合物。