[1]
G.C. Rovnyak, S.D. Kimball, B. Beyer, G. Cucinotta, J.D. Dimarco, J. Gougoutas, A. Hedberg, M. Malley, J.P. McCarthy, R. Zhang and S. Moreland: J. Med. Chem. Vol. 38 (1995), p.119
DOI: 10.1021/jm00001a017
Google Scholar
[2]
K.S. Atwal, G.C. Rovnyak, S.D. Kimball, D.M. Floyd, S. Moreland, B.N. Swanson, J.Z. Gougoutas, J. Schwartz, K.M. Smillie and M.F. Malley: J. Med. Chem. Vol. 33 (1990), p.2629
DOI: 10.1021/jm00171a044
Google Scholar
[3]
K.S. Atwal, B.N. Swanson, S.E. Unger, D.M. Floyd, S. Moreland, A. Hedberg and B. C. O'Reilly: J. Med. Chem. Vol. 34 (1991), p.806
Google Scholar
[4]
C.O. Kappe, W.M.F. Fabian and M.A. Semones: Tetrahedron Vol. 53 (1997), p.2803
Google Scholar
[5]
L.E. Overman, M.H. Rabinowitz and P.A. Renhowe: J. Am. Chem. Soc. Vol. 117 (1995), p.2657
Google Scholar
[6]
P. Biginelli: Gazz. Chim. Ital. Vol. 23 (1893), p.360
Google Scholar
[7]
C.V. Reddy, M. Mahesh, P.V.K. Raju, T.R. Babu and V.V.N. Reddy: Tetrahedron Lett. Vol. 43 (2002), p.2657
Google Scholar
[8]
A. Donadoni and A. Massi: Tetrahedron Lett. Vol. 42 (2001), p.7975
Google Scholar
[9]
S.J. Tu, F. Fang, C. Miao, H. Jiang, Y. Feng, D. Shi and X. Wang: Tetrahedron Lett. Vol. 44 (2003), p.6153
Google Scholar
[10]
P. Salehi, M. Dabiri, M.A. Zolfigol and M.A.B. Fard: Tetrahedron Lett. Vol. 44 (2003), p.2889
Google Scholar
[11]
R.V. Yarapathi, S. Kurva and S. Tammishetti: Cat. Commun. Vol. 5 (2004), p.511
Google Scholar
[12]
K.S. Atwal, G.C. Rovnyak, B.C. O'Reilly and J. Schewartz: J. Org. Chem. Vol. 54 (1989), p.5898
Google Scholar
[13]
K.R. Reedy, C. Reedy, M. Mahesh, P.V.K. Raju and V.V.N. Reedy: Tetrahedron Lett. Vol. 44 (2003), p.8173
Google Scholar
[14]
X. Han, F. Xu, Y. Luo and Q. Shen: Eur. J. Org. Chem. Vol. 14 (2005), p.1500
Google Scholar
[15]
J.C. Bussolari and P.A. McDonnell: J. Org. Chem. Vol. 65 (2005), p.6777
Google Scholar
[16]
F. Shirini, K. Marjani and H.T. Nahzomi: Arkivoc Vol. 1 (2007), p.51
Google Scholar
[17]
F. Shirini, M.A. Zolfigol and E. Mollarazi: Lett. Org. Chem. Vol. 2 (2005), p.718
Google Scholar
[18]
M.M. Heravi, Kh. Bakhtiari and F.F. Bamoharram: Cat. Commun. Vol. 7 (2006), p.373
Google Scholar
[19]
M.F. Garca, A.M. Arias, J.C. Hanson and J.A. Rodriguez: Chem. Rev. Vol. 104 (2004), p.4063
Google Scholar
[20]
W. An, X. Wu and X.C. Zeng: J. Phys. Chem. C Vol. 112 (2008), p.5747
Google Scholar
[21]
G.W.V. Cave, C.L. Raston and J.L. Scott: Chem. Commun. Vol. 21 (2001), p.59
Google Scholar
[22]
Y. Ma, C. Qian, L. Wang and M. Yang: J. Org. Chem. Vol. 65 (2000), p.3864
Google Scholar
[23]
T.S. Jin, H.X. Wang, C.Y. Xing, X.L. Li and T.S. Li: Synth. Commun. Vol. 34 (2004), p.3009
Google Scholar
[24]
K. Folkers, H.J. Harwood and T.B. Johnson: J. Am. Chem. Soc. Vol. 54 (1932), p.3751
Google Scholar
[25]
J. Lu and Y. Bai: Synthesis Vol. 4 (2002), p.466
Google Scholar
[26]
S.J. Tu, F. Fang, S.L. Zhu, T.J. Li, X.J. Zhang and Q.Y. Zhuang: synlett. 2004, p.537
Google Scholar
[27]
C.O. Kappe: J. Org. chem. Vol. 62 (1997), p.7201
Google Scholar
[28]
K. Singh, J. Singh, P.K. Deb and H. Singh: Tetrahedron Vol. 55 (1999), p.12873
Google Scholar
[29]
B.C. Ranu, A. Hajra and U.J. Jana: J. Org. Chem. Vol. 65 (2000), p.6270
Google Scholar