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Journal Abstract Search


758 related items for PubMed ID: 19256562

  • 1. Catalytic enantioselective synthesis of tetrahydrofurans: a dynamic kinetic asymmetric [3 + 2] cycloaddition of racemic cyclopropanes and aldehydes.
    Parsons AT, Johnson JS.
    J Am Chem Soc; 2009 Mar 11; 131(9):3122-3. PubMed ID: 19256562
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  • 2. AlCl3-promoted highly regio- and diastereoselective [3 + 2] cycloadditions of activated cyclopropanes and aromatic aldehydes: construction of 2,5-diaryl-3,3,4-trisubstituted tetrahydrofurans.
    Yang G, Shen Y, Li K, Sun Y, Hua Y.
    J Org Chem; 2011 Jan 07; 76(1):229-33. PubMed ID: 21142196
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  • 4. Diastereoselective synthesis of tetrahydrofurans via Palladium(0)-catalyzed [3 + 2] cycloaddition of vinylcyclopropanes and aldehydes.
    Parsons AT, Campbell MJ, Johnson JS.
    Org Lett; 2008 Jun 19; 10(12):2541-4. PubMed ID: 18503280
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  • 8. Tandem addition/cyclization reaction of organozinc reagents to 2-alkynyl aldehydes: highly efficient regio- and enantioselective synthesis of 1,3-dihydroisobenzofurans and tetrasubstituted furans.
    Chai Z, Xie ZF, Liu XY, Zhao G, Wang JD.
    J Org Chem; 2008 Apr 04; 73(7):2947-50. PubMed ID: 18315008
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  • 9. cis-2,3-Disubstituted cyclopropane 1,1-diesters in [3 + 2] annulations with aldehydes: highly diastereoselective construction of densely substituted tetrahydrofurans.
    Yang G, Sun Y, Shen Y, Chai Z, Zhou S, Chu J, Chai J.
    J Org Chem; 2013 Jun 07; 78(11):5393-400. PubMed ID: 23634966
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  • 10. Selective formation of spiro dihydrofurans and cyclopropanes through unexpected reaction of aldehydes with 1,3-dicarbonyl compounds.
    Wang GW, Gao J.
    Org Lett; 2009 Jun 04; 11(11):2385-8. PubMed ID: 19388701
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  • 11. Facile synthesis of tetrahydrofurans from cycloadditions of vinylidenecyclopropanes with aldehydes and further tunable transformations for the construction of furan, indene, and benzo[c]fluorene derivatives.
    Su C, Huang X, Liu Q, Huang X.
    J Org Chem; 2009 Nov 06; 74(21):8272-9. PubMed ID: 19827769
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  • 13. Formal [4 + 2] cycloaddition of donor-acceptor cyclobutanes and aldehydes: stereoselective access to substituted tetrahydropyrans.
    Parsons AT, Johnson JS.
    J Am Chem Soc; 2009 Oct 14; 131(40):14202-3. PubMed ID: 19764759
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  • 14. Enantioselective synthesis of highly functionalized dihydrofurans through copper-catalyzed asymmetric formal [3+2] cycloaddition of β-ketoesters with propargylic esters.
    Zhu FL, Wang YH, Zhang DY, Xu J, Hu XP.
    Angew Chem Int Ed Engl; 2014 Sep 15; 53(38):10223-7. PubMed ID: 25088662
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  • 15. Side-arm-promoted highly enantioselective ring-opening reactions and kinetic resolution of donor-acceptor cyclopropanes with amines.
    Zhou YY, Wang LJ, Li J, Sun XL, Tang Y.
    J Am Chem Soc; 2012 Jun 06; 134(22):9066-9. PubMed ID: 22578301
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  • 16. Efficient construction of oxa- and aza-[n.2.1] skeletons: Lewis acid catalyzed intramolecular [3+2] cycloaddition of cyclopropane 1,1-diesters with carbonyls and imines.
    Xing S, Pan W, Liu C, Ren J, Wang Z.
    Angew Chem Int Ed Engl; 2010 Apr 19; 49(18):3215-8. PubMed ID: 20340151
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  • 18. Highly enantioselective allylation of aldehydes catalyzed by indium(III)-PYBOX complex.
    Lu J, Ji SJ, Teo YC, Loh TP.
    Org Lett; 2005 Jan 06; 7(1):159-61. PubMed ID: 15625002
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  • 19. Diastereoselective synthesis of tetrahydrofurans from aryl 3-chloropropylsulfoxides and aldehydes.
    Komsta Z, Barbasiewicz M, Makosza M.
    J Org Chem; 2010 May 21; 75(10):3251-9. PubMed ID: 20408550
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  • 20. Highly enantioselective arylation of aldehydes and ketones using AlArEt(2)(THF) as aryl sources.
    Zhou S, Wu KH, Chen CA, Gau HM.
    J Org Chem; 2009 May 01; 74(9):3500-5. PubMed ID: 19338270
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