Hydrodehalogenation of 1,1-dibromocyclopropanes by Grignard reagents promoted by titanium compounds

被引:18
作者
Al Dulayymi, JR
Baird, MS [1 ]
Bolesov, IG
Nizovtsev, AV
Tverezovsky, VV
机构
[1] Univ Wales, Dept Chem, Bangor LL57 2UW, Gwynedd, Wales
[2] Moscow MV Lomonosov State Univ, Dept Chem, Moscow, Russia
来源
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2 | 2000年 / Royal Society of Chemistry卷 / 07期
关键词
D O I
10.1039/a910317l
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
1,1-Dibromocyclopropanes are converted into the corresponding monobromocyclopropanes (as mixtures of stereoisomers where appropriate) by reaction with 1.0-1.3 mol equiv. of ethylmagnesium bromide and 2-10 mol% titanium isopropoxide for < 1 h in ether at ambient temperature; in most cases examined, the yields were ca. 95%. With an excess of the Grignard reagent, the product is the non-halogenated cyclopropane (> 90%). With ethylmagnesium bromide, the reaction occurs very slowly in the absence of catalyst; with methylmagnesium bromide, the reaction does occur in the absence of catalyst, but is only slightly promoted in the presence of titanium isopropoxide. Reactions with a number of other Grignard reagents are also discussed. In the case of phenethylmagnesium bromide, the major product containing the phenethyl-group is ethylbenzene, together with small amounts of styrene and ethyl 4-phenyl-2-butyl ether, a product of trapping of the solvent, ether. In other cases, relatively large amounts of a diether, formally derived by hydrogen abstraction adjacent to the ether oxygen followed by dimerisation, are isolated. No products were identified incorporating the cyclopropane and either the Grignard alkyl group or the solvent. Labelling studies indicate that the hydrogen introduced into the cyclopropane is not derived from either the alpha- or beta-positions of the Grignard reagent. When the reduction is carried out with phenethylmagnesium bromide in d(8)-tetrahydrofuran both monobromides contain deuterium.
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页码:1603 / 1617
页数:15
相关论文
共 113 条
[1]   ORGANOMETALLIC COMPOUNDS .7. DECOMPOSITION OF ALKYL HALIDES BY COBALTOUS CHLORIDE/METHYLMAGNESIUM IODIDE SYSTEM - MECHANISM OF KHARASCH REACTION [J].
ABRAHAM, MH ;
HOGARTH, MJ .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1968, 12 (03) :497-&
[2]   A simple and efficient hydrodehalogenation of 1,1-dihalocyclopropanes [J].
AlDulayymi, JR ;
Baird, MS ;
Bolesov, IG ;
Tveresovsky, V ;
Rubin, M .
TETRAHEDRON LETTERS, 1996, 37 (49) :8933-8936
[3]   A FLEXIBLE ROUTE TO 1-BROMO-2-ALKYLCYCLOPROPENES [J].
ALDULAYYNI, AR ;
BAIRD, MS .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 1, 1994, (12) :1547-1548
[4]   REDUCTION OF GEM-BROMOFLUOROCYCLOPROPANES WITH ORGANOSILICON HYDRIDES [J].
ANDO, T ;
HOSAKA, H ;
FUNASAKA, W ;
YAMANAKA, H .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1973, 46 (11) :3513-3516
[5]   LOW-TEMPERATURE REACTION OF GEM-DIHALOCYCLOPROPANES WITH ACTIVATED MAGNESIUM [J].
ANDO, T ;
MURANAKA, T ;
ISHIHARA, T .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1981, 54 (10) :3227-3228
[6]  
[Anonymous], 1963, J ORG CHEM
[7]   RADICAL IONS IN PHOTOCHEMISTRY .21. THE PHOTOSENSITIZED (ELECTRON-TRANSFER) TAUTOMERIZATION OF ALKENES - THE PHENYL ALKENE SYSTEM [J].
ARNOLD, DR ;
MINES, SA .
CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1989, 67 (04) :689-698
[8]   PYROLYSIS OF HALOCYCLOPROPANES AT HIGH TEMPERATURES [J].
ASAHARA, T ;
ONO, K ;
TANAKA, K .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1971, 44 (04) :1130-+
[9]  
BACKES J, 1989, HOUBENWEYL METHODS B, V19, P407
[10]  
Baird M.S., UNPUB