首页> 外文期刊>Journal of Organometallic Chemistry >Carbon-carbon bond formation via oxidative-addition processes of titanium(II) reagents with pi-bonded organic substrates. Reactivity modifications by Lewis acids and Lewis bases Part 22. Organic chemistry of subvalent transition metal complexes
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Carbon-carbon bond formation via oxidative-addition processes of titanium(II) reagents with pi-bonded organic substrates. Reactivity modifications by Lewis acids and Lewis bases Part 22. Organic chemistry of subvalent transition metal complexes

机译:通过钛(II)试剂与π键结合的有机底物的氧化加成过程形成碳-碳键。通过路易斯酸和路易斯碱进行的反应性改性,第22部分。亚价过渡金属配合物的有机化学

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A series of titanium(II) derivatives, TiE2, was prepared by alkylalive reduction of TiE4 by two equivalents of n-butyllithium in THF at - 78 to 25 degreesC (E = Cl, F, OBu ", OPri and 0.5 NPh-CH2-CH2-NPh). The LiE by-product could usually be removed by THF evaporation and dissolution of the TiE2 into toluene. All such TiE2 derivatives were shown to effect the epimetallation and oligomerization of olefins, acetylenes and carbonyl derivatives in varying degrees. Particularly pertinent were the isolation and chemical reactions of titanium(II) isoproxide, the postulated intermediate in the Kulinkovich synthesis of cyclopropanols from ethyl Grignard reagents and organic esters, as well as an intermediate in many allied reactions developed by the Sate group. The findings of the present study corroborate completely the foregoing hypothesis that titanium(II) isopropoxide is the key intermediate in such novel reactions in organic synthesis. Furthermore, Ti(OPri), can be prepared readily in a relatively pure state and has been found to react with 1-alkenes, alkynes and ketones by epimetallation at 25 degreesC to form three-membered titanacycles, which can be utilized in organic synthesis. Finally, the ease with which such TiE2 derivatives epimetallate unsaturated organic substrates has been shown to be decreased by the steric demands of E and by the coordination of Lewis bases or donor solvent to the titanium(II) center. Lewis acids, on the other hand, greatly increase the rate of epimetallation by TiE2. A dramatic illustration of this effect is in the action of TiCl2. Me2AlCl on unsaturated hydrocarbons, wherein the polymerization of ethylene and of 1-alkene and the cyclotrimerization of alkynes are found to occur at room temperature. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 23]
机译:通过在-78至25℃(E = Cl,F,OBu,OPri和0.5 NPh-CH2-)中于THF中用两当量的正丁基锂烷基化还原TiE4,制备了一系列钛(II)衍生物TiE2。通常可以通过THF蒸发并将TiE2溶解在甲苯中来去除LiE副产物,所有这些TiE2衍生物均表现出不同程度地影响烯烃,乙炔和羰基衍生物的表观金属化和低聚。是异丙基钛(II)的分离和化学反应,由格氏试剂和有机酯从Kulinkovich合成环丙醇的假定中间体,以及Sate小组开发的许多相关反应的中间体。这项研究完全证实了上述假设,即异丙醇钛(II)是这种有机合成新反应的关键中间体,此外,钛(OPri)可以很容易地制备处于相对纯净的状态,并已发现它在25℃通过表观金属化与1-烯烃,炔烃和酮反应形成三元钛环,可用于有机合成。最后,已经表明,由于E的空间需求以及路易斯碱或给体溶剂与钛(II)中心的配位,降低了这种TiE 2衍生物的金属外延不饱和有机底物的难易程度。另一方面,路易斯酸极大地提高了TiE2的金属外延速率。 TiCl2的作用就是这种作用的生动例证。发现在不饱和烃上的Me2AlCl在室温下发生,其中乙烯和1-烯烃的聚合以及炔烃的环三聚。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:23]

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