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SYNTHESIS AND REACTIVITY OF ALKYLALUMINUM ADDUCTS OF ZIRCONIUM KETENE AND KETONE COMPLEXES.

机译:锆酮和酮配合物的烷基铝添加剂的合成和反应性。

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摘要

Treatment of dimeric bis(cyclopentadienyl)zirconium ketene complexes with alkylaluminum reagents affords trinuclear Zr(,2)Al bridging ketene complexes. X-Ray structural characterization of these complexes reveals several novel features. Two zirconium ketene ligands are spanned by symmetric dialkylaluminum and hydride, chloride, or methyl ligands to form slightly puckered 6-membered rings. A notable feature of these structures is the coordination of the bridging ligand X (H, Cl, or Me), which is characterized by a large Zr-X-Zr angle and an unusual hybridization for the bridging methyl group. The coordination of this methyl group represents a new bonding geometry for carbon, a trigonal-bipyramidal configuration between two metal centers. This geometry models intermediates in alkyl transmetallations that proceed with inversion and implies that transmetallations with inversion should be facile for electrophilic metal centers.; The bridging methyl complex Cp(,2)Zr(C,O-(eta)('2)-OCCHCH(,2)CMe(,3)) (,2)((mu)-AlMe(,2))((mu)-CH(,3)) reacts with acetylene to give an oxymetallacyclopentene. Carbonylation of the bridging methyl complex produces an acyl-enol complex--an unprecedented transformation for a group 4 ketene complex and one that is relevant to the behavior of ketene intermediates over Fischer-Tropsch catalysts.; Zirconium chloro acyl complexes react with alkylaluminum reagents to give alkyl-aluminum adducts of zirconium ketone complexes. Mechanistic studies of this reaction provide strong support for a stepwise mechanism involving transmetallation to form a zirconium alkyl acyl complex followed by reductive coupling of the zirconium alkyl and acyl ligands. A significant feature of these studies is the observation that aluminum reagents dramatically accelerate the reductive coupling of zirconium alkyl and acyl ligands.; The ketone complexes react readily with olefins, alkynes, and ketones in reactions that should prove useful in organic synthesis. Insertion of ethylene into the zirconium ketone ligand yields oxymetallacyclopentanes, which can hydrolyzed to tertiary alcohols. Insertion of alkynes into the zirconium ketone ligand affords oxymetallacyclopentenes. Terminal alkynes react with high regioselectivity to give oxymetallacyclopentenes with the alkyl substituent (alpha) to the metal center. Hydrolysis of these complexes yields tertiary allyl alcohols. The ketone complexes couple with organic ketones to give diolates. Hydrolysis of the diolates affords 1,2-diols. This zirconium-mediated reductive coupling of a ketone ligand with organic carbonyl substrates may prove useful for the preparation of 1,2-diols.; Trinuclear Zr(,2)Al ketone complexes are formed in the reaction of two equivalents of alkyl acyl zirconium complexes and one equivalent of an aluminum reagent. These complexes appear structurally similar to the trinuclear Zr(,2)Al ketene complexes discussed above.
机译:用烷基铝试剂处理二聚双(环戊二烯基)锆乙烯酮络合物,得到三核Zr(,2)Al桥联乙烯络合物。这些复合物的X射线结构表征揭示了几个新颖的特征。对称的二烷基铝和氢化物,氯化物或甲基配体跨越两个锆烯酮配体,以形成略微起皱的6元环。这些结构的显着特征是桥联配体X(H,Cl或Me)的配位,其特征是大的Zr-X-Zr角和桥连甲基的不寻常杂交。该甲基的配位代表了碳的新键合几何形状,即两个金属中心之间的三角-双锥体构型。这种几何形状模拟了烷基反金属化过程中伴随反型进行的中间体,并暗示带反型的反金属化过程对于亲电子金属中心而言应该是容易的。桥接甲基络合物Cp(,2)Zr(C,O-η((2)-OCCHCH(,2)CMe(,3))(,2)(μ-AlMe(,2))( (μ-CH(,3))与乙炔反应,得到氧金属环戊烯。桥连的甲基络合物的羰基化会产生酰基-烯醇络合物,这是第4组乙烯酮络合物的前所未有的转变,并且与乙烯-中间体在费-托催化剂上的行为有关。锆氯酰基络合物与烷基铝试剂反应,生成锆酮络合物的烷基铝加合物。该反应的机理研究为逐步机理提供了强有力的支持,该逐步机理涉及金属转移以形成锆烷基酰基配合物,然后还原偶联烷基锆和酰基配体。这些研究的显着特征是观察到铝试剂极大地促进了烷基锆和酰基配体的还原偶联。酮络合物在应证明可用于有机合成的反应中容易与烯烃,炔烃和酮反应。将乙烯插入锆酮配体中可生成可分解为叔醇的氧化金属环戊烷。将炔烃插入锆酮配体中,得到氧金属环戊烯。末端炔烃以高区域选择性反应,从而在金属中心形成具有烷基取代基(α)的氧金属亚环戊烯。这些络合物的水解产生叔烯丙醇。酮络合物与有机酮偶合得到二醇盐。二醇盐的水解得到1,2-二醇。酮配体与有机羰基底物的锆介导的还原偶联可能证明对制备1,2-二醇有用。三核Zr(,2)Al酮络合物是由两当量的烷基酰基锆络合物和一当量的铝试剂反应生成的。这些络合物在结构上类似于上述的三核Zr(,2)Al烯酮络合物。

著录项

  • 作者

    WAYMOUTH, ROBERT MEBANE.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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