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首页> 外文期刊>Synthesis and Reactivity in Inorganic and Metal-Organic Chemistry >ALKYL- AND ACYL-SUBSTITUTED VINYLSTANNANES: SYNTHESIS AND REACTIVITY IN ELECTROPHILIC SUBSTITUTION REACTIONS
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ALKYL- AND ACYL-SUBSTITUTED VINYLSTANNANES: SYNTHESIS AND REACTIVITY IN ELECTROPHILIC SUBSTITUTION REACTIONS

机译:烷基和酰基取代的戊二酸:亲电子取代反应的合成和反应性

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摘要

Six substituted vinylstannanes have been prepared. (E)- and (Z)-2-trimethylstannyl-2-butene, (1) and (2), respectively, 2-methyl-1-(trimethylstannyl) propene, (3), and 3-methyl-2-trimethylstannyl-2-butene, (4), were prepared by coupling the appropriate lithium or Grignard reagent with chloro-trimethylstannane. 3-Trimethylstannyl-3-butene-2-one, (5), and (Z)-3-trimethylstannyl-3-hexene-2-one, (6), were prepared by palladium(O) catalyzed hydrostannation of the appropriate ynone. This reaction was regiospecific such that the trimethylstannyl and carbonyl groups were bonded at the same vinyl carbon. The reaction was also stereospecific giving syn addition in each case. However, isomerization to a mixture of isomers was observed for the reaction of (5) with Me_3SnD and complete isomerization of E-(6) to Z-(6). Each compound was characterized by ~H, ~(13)C, and ~(119)Sn NMR. The reactivity to protodestannylation was determined for each compound by spectrophotometric measurement of second order rate constants. The reactivity of the multimethyl-substituted vinylstannanes. However, two methyl groups at the remote vinyl carbon exhibited a synergistic activating effect on the protodestannylation reactivity. The acyl group was found to be deactivating for protodestannylation. The stereochemistry of the reaction was found to take place with retention of configuration.
机译:已经制备了六种取代的乙烯基锡烷。 (E)-和(Z)-2-三甲基锡烷基-2-丁烯,(1)和(2)分别是2-甲基-1-(三甲基锡烷基)丙烯,(3)和3-甲基-2-三甲基锡烷基通过将适当的锂或格氏试剂与氯代三甲基锡烷偶合,可制得-2-丁烯(4)。 3-三甲基锡烷基-3-丁烯-2-酮(5)和(Z)-3-三甲基锡烷基-3-己烯-2-酮(6)是通过钯(O)催化适当的炔酮的氢化锡反应制得的。该反应是区域特异性的,使得三甲基锡烷基和羰基键合在相同的乙烯基碳上。该反应也是立体特异性的,在每种情况下均提供顺式加成。然而,对于(5)与Me_3SnD的反应和E-(6)至Z-(6)的完全异构化,观察到异构化为异构体的混合物。每种化合物均通过〜H,〜(13)C和〜(119)Sn NMR表征。通过二阶速率常数的分光光度法测定每种化合物对原甲酸酯化的反应性。多甲基取代的乙烯基锡烷的反应性。然而,在偏远的乙烯基碳上的两个甲基显示出对原去锡烷基化反应性的协同活化作用。发现该酰基基团由于去甲壳素的作用而失活。发现反应的立体化学在保留构型的情况下发生。

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