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        Synthesis  2003(16): 2530-2534  
DOI: 10.1055/s-2003-42445
   DOI: 10.1055/s-2003-42445
PAPER
© Georg Thieme Verlag Stuttgart · New YorkSynthesis of Geminal Dimetal-Substituted Terminal Alkenes Utilizing a Cuprate Rearrangement: Toward an Efficient and General Access to Trisubstituted Olefins
Further Information
            
               
                  
                        
                              Received
                              21 July 2003 
                      
Publication Date:
21 October 2003 (online)
            
         
      
   Publication History
Publication Date:
21 October 2003 (online)

Abstract
Preparation of 1,1-dimetalated-1-alkenes was realised via metalate rearrangements in the opening of lithiodihydrofuran 6 by reaction with dilithium stannyl-, silyl-, alkyl- and aryl(cyano)cuprates and quenching with electrophilic agents. Several hetero (E)- and (Z)-1,1-dimetalated alkene derivatives were so produced in good to high yields and total stereocontrol.
Key words
metalate rearrangement - lithium - copper - tin - trisubstituted olefins
- 1a 
             
            Su D.-S.Meng D.Bertinato P.Balog A.Sorensen EJ.Danishefsky SJ.Zheng YH.Chou TC.He L.Horwitz SB. Angew. Chem., Int. Ed. Engl. 1997, 36: 757
- 1b 
             
            Schinzer D.Bauer A.Schieber J. Chem. Eur. J. 1999, 5: 2492
- 1c 
             
            Sawada D.Kanai M.Shibasaki M. J. Am. Chem. Soc. 2000, 122: 10521 ; and references cited therein
- 2 
             
            Dvorak CA.Schmitz WD.Poon DJ.Pryde DC.Lawson JP.Amos RA.Meyers AI. Angew. Chem. Int. Ed. 2000, 39: 1664 ; and references cited therein
- 3 
             
            Kuligowski C.Bezzenine-Lafollée S.Chaume G.Mahuteau J.Barrière J.-C.Bacqué E.Pancrazi A.Ardisson J. J. Org. Chem. 2002, 67: 4565
- 4a 
             
            Kocienski P.Dixon NJ. Synlett 1989, 52
- 4b 
             
            Takle A.Kocienski P. Tetrahedron 1990, 46: 4503
- 4c 
             
            Kocienski P.Barber C. Pure Appl. Chem. 1990, 62: 1933
- 4d 
             
            Pimm A.Kocienski P.Street SDA. Synlett 1992, 886
- 4e See also:  
            Kocienski P. In Organic Synthesis via Organometallics, Proceedings of the Fourth Symposium in Aachen, July 15-18, 1992Enders E.Gais H.-J. Verlag Wiesbaden: Germany, 1992.
- 5a 
             
            Le Ménez P.Fargeas V.Poisson J.Ardisson J.Lallemand J.-Y.Pancrazi A. Tetrahedron Lett. 1994, 35: 7767
- 5b 
             
            Le Ménez P.Firmo N.Fargeas V.Ardisson J.Pancrazi A. Synlett 1994, 995
- 5c 
             
            Le Ménez P.Berque I.Fargeas V.Ardisson J.Pancrazi A. Synlett 1994, 998
- 5d 
             
            Le Ménez P.Berque I.Fargeas V.Ardisson J.Lallemand J.-Y.Pancrazi A. J. Org. Chem. 1995, 60: 3592
- 5e 
             
            Le Ménez P.Berque I.Fargeas V.Pancrazi A.Tran Huu Dau ME.Ardisson J. Synlett 1996, 1125
- 5f 
             
            Fargeas V.Le Ménez P.Berque I.Ardisson J.Pancrazi A. Tetrahedron 1996, 52: 6613
- 6 
             
            Lipshutz BH.Kozlowski JA.Wilhelm RS. J. Org. Chem. 1984, 49: 3943
- 7 
             
            Mitchell TN.Wickenkamp R.Amamria A.Dicke R.Schneider U. J. Org. Chem. 1987, 52: 4868
- When 1.1 equiv of I2 was used as the trap, the reaction gave a mixture of the expected iodotin derivative (Z)-12 (9% yield), the unsubstituted vinyltin (51% yield) and the 1,1-ditin compound 15 (22% yield). It was interesting to note that when the reaction of the cuprate 8c with 6 was followed by an H3O+ quench, the distannyl 15 was formed in less than 2% yield. Formation of a ditin compound was earlier reported during a stannylcupration followed by trappping with an electrophile other than proton, see:
- 8a 
             
            Piers E.Chong JM. J. Org. Chem. 1982, 47: 1602
- 8b See also:  
            Piers E.Chong JM. J. Org. Chem. 1982, 47: 1604
- 8c See also:  
            Betzer JF.Delaloge F.Muller B.Pancrazi A.Prunet J. J. Org. Chem. 1997, 62: 7768
- 8d 
             
            Suzenet F.Blart E.Quintard J.-P. Synlett 1998, 879
- 9a 
             
            Aksela R.Oehlschlager AC. Tetrahedron 1991, 47: 1163
- 9b For preparation of Bu3SnLi see:  
            Still WC. J. Am. Chem. Soc. 1977, 99: 4836
- 10 
             
            Klunder JM.Onami T.Sharpless KB. J. Org. Chem. 1989, 54: 1295
- 11 
             
            Betzer JF.Le Ménez P.Prunet J.Brion J.-D.Ardisson J.Pancrazi A. Synlett 2002, 1
- 12a 
             
            Lipshutz BH.Sharma S.Reuter DC. Tetrahedron Lett. 1990, 31: 7253
- 12b 
             
            Still WC. J. Org. Chem. 1976, 41: 3063
- 13 
             
            Lautens M.Huboux AH. Tetrahedron Lett. 1990, 31: 3105
 
    