首页> 外文期刊>Journal of Organometallic Chemistry >Oxidation of olefins by palladium(II). 18. Effect of reaction conditions, substrate structure and chiral ligand on the bimetallic palladium(II) catalyzed asymmetric chlorohydrin synthesis
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Oxidation of olefins by palladium(II). 18. Effect of reaction conditions, substrate structure and chiral ligand on the bimetallic palladium(II) catalyzed asymmetric chlorohydrin synthesis

机译:钯(II)氧化烯烃。 18.反应条件,底物结构和手性配体对双金属钯(II)催化不对称氯醇合成的影响

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The effect of electronic factors, solvent composition, identity of the chiral bidentate, and olefin structure on the yields and enantioselectivities of the asymmetric chlorohydrin synthesis were investigated. Electronic effects on the chlorohydrin reaction were tested by oxidation of phenyl allyl ether p-substituted by H, Cl, CH3O and CN. All species gave same similar yields and enantioselectivities indicating that electronic effects are not important. Varying the solvent composition of the THF-H2O mixtures indicated that the optimal solvent mixture contains more than 85% THF. Variation of added [Cl-] indicated that the added chloride had to be greater than 0.2 M for high yields and %ee's. Under ideal conditions the enantioselectivities of the chlorohydrins from the phenyl allyl ethers were more than 90%ee. Vinylacetic acid, methyl acrylate and trans-cinnamaldehyde were unreactive under the usual reaction conditions while 2-hydroxy-3-butene and allyl acetate give lower %ee's than did the phenyl allyl ethers. Styrene and alpha-methylstyrene gives comparable rates of reactions but the %ee's were lower with the latter. (2,6-Diisopropyl)phenyl allyl ether and 2hydroxy-3-butene give high %ee's indicating that steric hindrance was not a major factor. All of the chiral bridging ligands tested gave satisfactory results except for DACH. A strange case was BZOX which did not give any induction at all. Structural studies showed the ligands are not large enough to bridge both Pd(II) in the bimetallic catalyst so one Pd(II) contained both ligand groups of the bidentate ligand and was thus unreactive. The other Pd(II) of the dimer was reactive but did not contain any chiral ligands to induce optical activity. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 28]
机译:研究了电子因素,溶剂组成,手性双齿的身份以及烯烃结构对不对称氯醇合成的收率和对映选择性的影响。通过对被H,Cl,CH3O和CN对位取代的苯基烯丙基醚的氧化,测试了对氯代醇反应的电子效应。所有物种都具有相同的相似产率和对映选择性,表明电子效应并不重要。改变THF-H2O混合物的溶剂组成表明,最佳溶剂混合物包含超过85%的THF。添加的[Cl-]的变化表明,为了获得高收率和%ee,添加的氯化物必须大于0.2M。在理想条件下,来自苯基烯丙基醚的氯醇的对映选择性大于90%ee。乙烯基乙酸,丙烯酸甲酯和反式肉桂醛在通常的反应条件下不反应,而2-羟基-3-丁烯和乙酸烯丙酯的%ee低于苯基烯丙基醚。苯乙烯和α-甲基苯乙烯的反应速率相当,但后者的%ee较低。 (2,6-二异丙基)苯基烯丙基醚和2-羟基-3-丁烯给出高%ee,表明空间位阻不是主要因素。除DACH外,所有测试的手性桥联配体均给出令人满意的结果。 BZOX是一个奇怪的案例,它根本没有给出任何归纳。结构研究表明,配体的大小不足以桥接双金属催化剂中的两个Pd(II),因此一个Pd(II)包含双齿配体的两个配体基团,因此没有反应性。二聚体的另一种Pd(II)具有反应性,但不含任何手性配体来诱导光学活性。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:28]

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