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末端烯烃催化水合生成伯醇。

Catalytic hydration of terminal alkenes to primary alcohols.

作者信息

Jensen C M, Trogler W C

出版信息

Science. 1986 Sep 5;233(4768):1069-71. doi: 10.1126/science.233.4768.1069.

Abstract

Direct catalytic hydration of terminal alkenes to primary alcohols would be an inexpensive route to industrially useful alcohols and a convenient synthetic route for the synthesis of terminal alcohols in general. The reaction between trans- PtHCl(PMe(3))(2) (where Me = CH(3)) and sodium hydroxide in a one-to-one mixture of water and 1-hexene yields a species that, at 60 degrees C and in the presence of the phasetransfer catalyst benzyltriethylammonium chloride, catalyzes selective hydration of 1-hexene to n-hexanol at a rate of 6.9 +/- 0.2 turnovers per hour. Hydration of 1-dodecene to n-dodecanol occurs at a rate of 8.3 +/- 0.4 turnovers per hour at 100 degrees C. Deuterium labeling experiments with trans-PtDCl(PMe(3))(2) show that hydration involves reductive elimination of a C-H bond. At low hydroxide concentrations (<8 equivalents), hydration of the water-soluble olefin 3-butene-1-ol to 1,4-butanediol exhibited a first-order dependence on hydroxide concentration for loss of catalytic activity. This suggests that hydroxide attacks the coordinated alkene slowly. At high hydroxide concentrations, the rate of catalysis was hydroxide-independent and first order in alkene. Substitution of coordinated water (k(1) = 9.3 +/- 0.5 x 10(-3) liters per mol per second) appears to be limitng under these conditions.

摘要

将末端烯烃直接催化水合为伯醇,对于工业上有用的醇类来说是一条低成本的路线,总体而言也是合成末端醇类的便捷合成路线。反式-PtHCl(PMe(3))(2)(其中Me = CH(3))与氢氧化钠在水和1-己烯的一对一混合物中反应,生成一种物质,该物质在60℃且存在相转移催化剂苄基三乙基氯化铵的情况下,能以每小时6.9±0.2次周转的速率催化1-己烯选择性水合为正己醇。在100℃时,1-十二碳烯水合为正十二醇的速率为每小时8.3±0.4次周转。用反式-PtDCl(PMe(3))(2)进行的氘标记实验表明,水合涉及C-H键的还原消除。在低氢氧化物浓度(<8当量)下,水溶性烯烃3-丁烯-1-醇水合为1,4-丁二醇时,催化活性的丧失对氢氧化物浓度呈一级依赖性。这表明氢氧化物对配位烯烃的进攻较慢。在高氢氧化物浓度下,催化速率与氢氧化物无关,对烯烃呈一级反应。在这些条件下,配位水的取代(k(1) = 9.3±0.5×10(-3)升/摩尔·秒)似乎是限速步骤。

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