Organic reactions catalyzed by methylrhenium trioxide: Reactions of ethyl diazoacetate and organic azides

被引:106
作者
Zhu, ZL
Espenson, JH
机构
[1] IOWA STATE UNIV,AMES LAB,AMES,IA 50011
[2] IOWA STATE UNIV,DEPT CHEM,AMES,IA 50011
关键词
D O I
10.1021/ja954039t
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Methylrhenium trioxide (CH3ReO3 or MTO) catalyzes several classes of reactions of ethyl diazoacetate, EDA. It is the first high valent oxo complex for carbene transfer. Under mild conditions and in the absence of other substrates, EDA was converted to a 9:1 mixture of diethyl maleate and diethyl fumarate. In the presence of alcohols, alpha-alkoxy ethyl acetates were obtained in good yield. The yields dropped for the larger and more branched alcohols, the balance of material being diethyl maleate and fumarate. An electron-donating group in the para position of phenols favors the formation of a-phenoxy ethyl acetates. The use of EDA to form alpha-thio ethyl acetates and N-substituted glycine ethyl esters, on the other hand, is hardly affected by the size or structure of the parent thiol or amine, with all of these reactions proceeding in high yield. MTO-catalyzed cycloaddition reactions occur between EDA and aromatic imines, olefins, and carbonyl compounds. Three-membered ring products are formed: aziridines, cyclopropanes, and epoxides, respectively. The reactions favor the formation of trans products, and provide a convenient route for the preparation of aziridines. Intermediate carbenoid and nitrenoid species have been proposed. In the presence of an oxygen source such as an epoxide, ethyl diazoacetate and azibenzil are converted to an oxalic acid monoethyl ester and to benzil; at the same time the epoxide was converted to an olefin. These results provide further support for the proposed intermediate, a cyclic species containing Re, O, and CHCO(2)Et (or, occasionally, CPhC(O)Ph) in a three-membered ring.
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页码:9901 / 9907
页数:7
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