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首页> 外文期刊>European journal of inorganic chemistry >Hydrido complexes of yttrium and lutetium supported by bulky guanidinato ligands [Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2) (Ln = Y, Lu): Synthesis, structure, and reactivity
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Hydrido complexes of yttrium and lutetium supported by bulky guanidinato ligands [Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2) (Ln = Y, Lu): Synthesis, structure, and reactivity

机译:庞大的胍基配体[Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2)支撑的钇和的氢化物络合物:合成,结构和反应性

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Lewis base free hydrido complexes of yttrium and lutetium supported by bulky cyclohexyl- substituted guanidinato ligands, [Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2) (Ln = Y, Lu), were synthesized and characterized. Single-crystal X-ray diffraction studies revealed dimeric structures. H-1 NMR spectroscopy shows that complex [Y(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2) retains its dimeric structure in C6D6 solution. Scrambling of the hydrido complexes [Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2) (Ln = Y, Lu) in C6D6 resulted in an equilibrium mixture containing the heterodimetallic species [{(Me3Si)(2)NC(NCy)(2)}(2)Y(mu-H)(2)-Lu{(Me3Si)(2)NC(NCy)(2)}(2)], indicating the dissociation of dimers and the presence of monomeric species in solution. Both compounds initiate the polymerization of ethylene: the activity of the cyclohexyl- substituted yttrium complex, [Y(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2), is much lower than that of the isopropyl-substituted analogue, [Y(mu-H){(Me3Si)(2)NC(NiPr)(2)}(2))(2), while in the case of lutetium the activities of [Ln(mu-H){(Me3Si)(2)NC(NR)(2)}(2)](2) (R = iPr, Cy) are similar. Complexes [Ln(mu-H){(Me3Si)(2)NC(NR)(2)}(2)](2) (Ln = Y, Lu; R = iPr, Cy) were shown to catalyze efficiently the hydrosilylation of 1-nonene with PhSiH3 (at a 1:1 substrates mol ratio) to give the terminal silane PhSiH2(n-C9H19) exclusively. If the hydrosilylation reaction is carried out in the presence of a twofold molar excess of 1-nonene, double addition takes place and leads to the formation of tertiary silane PhSiH(n-C9H19)2, which was obtained in 96% yield. The hydrido complexes [Ln(mu-H){(Me3Si)(2)NC(NiPr)(2)}(2)](2) (Ln = Y, Lu) efficiently initiate the ring-opening polymerization of epsilon-caprolactone to give polymers with molar mass up to 80000. ((C) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008).
机译:庞大的环己基取代的胍基配体[Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2)支撑的钇和的Lewis游离氢复合物(Ln = Y,Lu),被合成和表征。 X射线单晶衍射研究表明二聚体结构。 H-1 NMR光谱表明,复合物[Y(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2)在C6D6溶液中保留其二聚体结构。在C6D6中加氢络合物[Ln(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2)(Ln = Y,Lu)的加扰产生平衡混合物异双金属物质[{(Me3Si)(2)NC(NCy)(2)}(2)Y(mu-H)(2)-Lu {(Me3Si)(2)NC(NCy)(2)}(2) ],表明溶液中二聚体的解离和单体种类的存在。两种化合物均会引发乙烯的聚合:环己基取代的钇配合物[Y(mu-H){(Me3Si)(2)NC(NCy)(2)}(2)](2)的活性非常高。低于异丙基取代的类似物[Y(mu-H){(Me3Si)(2)NC(NiPr)(2)}(2))(2),而在of的情况下,[ Ln(mu-H){(Me3Si)(2)NC(NR)(2)}(2)](2)(R = iPr,Cy)相似。配合物[Ln(mu-H){(Me3Si)(2)NC(NR)(2)}(2)](2)(Ln = Y,Lu; R = iPr,Cy)被证明可有效催化氢化硅烷化将1-壬烯与PhSiH3(以1:1底物摩尔比)合成,仅得到末端硅烷PhSiH2(n-C9H19)。如果在两倍摩尔过量的1-壬烯存在下进行氢化硅烷化反应,则会发生两次加成反应,并导致形成叔硅烷PhSiH(n-C9H19)2,其产率为96%。氢化物配合物[Ln(mu-H){(Me3Si)(2)NC(NiPr)(2)}(2)](2)(Ln = Y,Lu)有效地引发ε-己内酯的开环聚合得到摩尔质量最高达80000的聚合物。((C)Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,德国,2008)。

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