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在两相条件下,甲基三辛基铵四(氧代二过氧钨)磷酸酯(3-)催化过氧化氢将烯烃高效氧化裂解为羧酸。反应历程的合成方面及研究

Efficient Oxidative Cleavage of Olefins to Carboxylic Acids with Hydrogen Peroxide Catalyzed by Methyltrioctylammonium Tetrakis(oxodiperoxotungsto)phosphate(3-) under Two-Phase Conditions. Synthetic Aspects and Investigation of the Reaction Course.

作者信息

Antonelli Ermanno, D'Aloisio Rino, Gambaro Mario, Fiorani Tiziana, Venturello Carlo

机构信息

EniChem S.p.A., Centro Ricerche Novara Istituto G. Donegani, via G. Fauser 4, 28100 Novara, Italy.

出版信息

J Org Chem. 1998 Oct 16;63(21):7190-7206. doi: 10.1021/jo980481t.

Abstract

The oxidative cleavage of alkenes to carboxylic acids with 40% w/v aqueous hydrogen peroxide catalyzed by methyltrioctylammonium tetrakis(oxodiperoxotungsto)phosphate(3-) (Ia) is reported to occur in high yields and selectivities under two-phase conditions in the absence of organic solvents. On the basis of a study of the reaction, two main reaction pathways leading to acids have been recognized, the first one involving the perhydrolysis and the second one the hydrolysis of the epoxide initially formed. The "perhydrolytic" reaction pathway appears to play a primary role in the oxidation of medium- and long-chain alkenes to acids, while it intervenes to a rather limited extent in the oxidation of arylalkenes and C(5)-C(7) cycloalkenes. The occurrence of this pathway has been proved by the isolation of the intermediate beta-hydroperoxy alcohols and their transformation into acids with H(2)O(2) and Ia. The course of this transformation, involving an initial oxidation (to alpha-oxo hydroperoxide) or decomposition (to carbonyl compounds) of the beta-hydroperoxy alcohol intermediate, is described. The primary oxidation products, alpha-hydroperoxy ketones, have been isolated in the case of internal beta-hydroperoxy alcohols, whereas their presence has been evidenced with terminal beta-hydroperoxy alcohols bearing a secondary hydroxy group. Hydrogen peroxide concentration appears to exert a remarkable influence on medium acidity, and its effects on the reaction efficiency are shown.

摘要

据报道,在无有机溶剂的两相条件下,由甲基三辛基铵四(氧二过氧钨)磷酸酯(3-)(Ia)催化,用40%重量/体积的过氧化氢水溶液将烯烃氧化裂解为羧酸的反应,能以高产率和选择性发生。基于对该反应的研究,已识别出两条生成酸的主要反应途径,第一条涉及过水解,第二条涉及最初形成的环氧化物的水解。“过水解”反应途径似乎在中长链烯烃氧化为酸的过程中起主要作用,而在芳基烯烃和C(5)-C(7)环烯烃的氧化中其参与程度相当有限。通过分离中间产物β-氢过氧醇并将其与过氧化氢和Ia转化为酸,证明了该途径的存在。描述了该转化过程,包括β-氢过氧醇中间体的初始氧化(生成α-氧代氢过氧化物)或分解(生成羰基化合物)。对于内型β-氢过氧醇,已分离出初级氧化产物α-氢过氧酮,而对于带有仲羟基的末端β-氢过氧醇,已证明其存在。过氧化氢浓度似乎对介质酸度有显著影响,并展示了其对反应效率的影响。

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