• Tiada Hasil Ditemukan

Drew and A

N/A
N/A
Protected

Academic year: 2022

Share "Drew and A"

Copied!
6
0
0

Tekspenuh

(1)

REFENRECES

1. D. Haldar, M.G.B. Drew and A. Banerjee, Tetrahedron, 62, (2006) 6370.

2. C.H. Gorbitz, Chem. Eur. J. 13, (2007) 1022

3. R. Parthasarathy, S. Chaturvedi and K. Go, Proc. Natl. Acad. Sci. USA, 87 (1990) 871 4. S.K. Kundu, P.A. Mazumdar, A.K. Das, V. Bertolasi and A. Pramanik, J. Chem. Soc.

Perkin Trans., 2, (2002) 1602.

5. S. Ray, M.G.B. Drew, A.K. Das and A. Banerjee, Supramolecular Chemistry, 18, (2006) 455.

6. J.M. Lehn, Supramolecular Chemistry Concept and Perspective; Weinheim, Germany, 1995.

7. P.N.W. Baxter, Comprehensive Supramolecular Chemistry, Chapter 7, Pergamon:

Oxford, 1996.

8. P.N.W. Baxter, G.S. Hanan and J.M. Lehn, J. Chem. Soc., Chem. Commun., 35 (1996) 1838.

9. R.K. Kumar, S. Balasubramanian and I. Goldberg, Inorg. Chem., 37, (1998) 541 10. Y. Kuroda, Y. Kato and H. Ogoshi, J. Chem. Soc., Chem. Commun.,9 (1997) 469.

11. J.M. Bregeault, Dalton Trans., 307 (2003) 3289.

12. S.N. Rao, K.N. Munshi and N.N. Rao, J. Mol. Cat. A: Chem., 156, (2000) 205

13. J.A. Brito, M. Gomez, G. Muller, H. Teruel, J.C. Clinet, E. Dunach and M.A. Maestro, Eur. J. Inorg. Chem., 13 (2004) 4278

14. C.Y. Lorber, S.P. Smidt and J.A. Osborn, Eur. J. Inorg. Chem., 8 (2000) 655.

(2)

15. X.N. Zhang, M. Breslav, J. Grimm, K.L. Guan, A.H. Huang, F.Q. Liu, A.C.

Maryanoff, D. Palmer, M. Patel, Y. Qian, C. Shaw, K. Sorgi, S. Stefanick and D.W.

Xu, J. Org. Chem., 67, (2002), 9471.

16. H. Paulsen and D. Stoye, in J. Zabicky, ed., The Chemistry of Functional Groups, John Wiley & Sons, Inc., New York, (1970) 515.

17. A.G.Doyle and E.N.Jacobsen, Chem. Rev., 107, (2007) 5713

18. G.A. Albada, I. Dominicus, I. Mutikainen, U. Turpeinen and J. Reedijk, Polyhedron, 26, (2007) 3731

19. I. Dance and M. Scudder, J. Chem. Soc., Dalton Trans., (1998)1341 20. J.C.M. Rivas and L. Brammer, New J. Chem., 22, (1998) 1315

21. Y. Luan, G. Wang, R.L. Luck and M. Yang, Eur. J. Inorg. Chem., 9, (2007) 1215 22. J. Topic and J.O. Bachert, Inorg. Chem., 31, (1992) 511.

23. I.W. Boyd and J.T. Spence, Inorg. Chem., 21, (1982) 1602.

24. S. Purohit, A.P. Koley, L.S. Prasad, P.T. Manoharan and S. Ghosh, Inorg. Chem., 28, (1989) 3735.

25. K. Nakomoto, Infrared and Raman Spectra of Inorganic and Coordination Compound, John Wiley & Son: New York, (1978) 344

26. W. Otting, Chem. Ber., 89, (1956) 2887

27. S.S. Singh and C.B.S. Sengar, Ind. J. Chem., 7, (1969) 812, 28. S.M. Horner and S.Y. Tyree; Inorg. Chem., 1, (1962) 122

29. R.A. Lal, J. Chakraborty, A. Kumar, S. Bhaumik, R.K. Nath and D. Ghosh, Indian J.

(3)

30. R.A. Lal and S. Das, R.K. Thapa, Inorg. Chim. Acta, 132 (1987) 129 31. B. Ji, Q. Du, K. Ding, Y. Li and Z. Zhou, Polyhedron, 15 (1996) 403 32. R.L. Dutta and M.M. Hossain, J. Sci. Ind. Res., 44 (1985) 635

33. M. Hussain, S.S. Bhatacharjee, K.B. Singh and R.A. Lal, Polyhedron, 10 (1991) 779 34. J.K. Wu and B.P. Daily, J. Chem. Phys., 41 (1965) 1849

35. R.H. Holm, P. Kennepohl and E.I. Solomon, Chem. Rev., 96, (1996) 2239.

36. J.E. Backvall, Modern Oxidation Method, Willey-VCH, Weinheim, 2004

37. J.A. Brito, M. Gomez, G. Muller, H. Teruel, J.C. Clinet, E. Dunach and M.A. Maestro, Eur. J. Inorg. Chem., (2004) 4278.

38. B. Meunier, Metal-Oxo and Metal Peroxo Species in Catalytic Oxidation, Springer, Berlin, 2000.

39. C.Y. Lorber, S.P. Smidt and J.A. Osborn, Eur. J. Inorg. Chem., 35 (2004) 655.

40. R. Dinda, P. Sengupta, H. Meyer-Figge and W.S. Sheldrick, J. Chem .Soc., Dalton Trans., (2002) 4434.

41. W. Plass, Z. Anorg. Allg. Chem., 623, (1997) 997

42. G.E. Meister and A. Butler, Inorg. Chem. 33, (1994) 3269

43. M.S, Reynolds, K.J. Babinski, M.C. Bouteneff, J.L. Brown, R.E. Campbell, M.A.

Cowan, M.R. Durwin, T. Foss, P.O’Brien and H.R. Penn, Inorg. Chim. Acta, 263, (1997) 225.

44. C.P. Rao, A Sreedhara, P.V. Rao, M.B. Verghese, K. Rissanen, E. Koleimainen, N.K.

Lokanath, M.A. Sridhar and J.S. Prasad, J. Chem. Soc. Dalton Trans., (1998) 2383.

(4)

45. C. Kisker, H. Schindelin, D. Baas, J. Rétey, R.U. Meckenstock and P.M.H. Kroneck,

"A structural comparison of molybdenum cofactor-containing enzymes". FEMS Microbiol. Rev., 22, (1999) 503

46. M.M. Jones, J. Am. Chem. Soc., 81, (1959) 3188.

47. L.J. Barbour J Supramol Chem, 1, (2001), 189 48. P.C.H. Mitchell Quart Rev. 20 (1966), 103

49. W. Kemp, Organic Spectroscopy, Macmillan, Hamshire, (1987) 62 50. K. Nakamoto, Infrared and Raman Spectra of Inorganic and Coordination

Compounds, Wiley, New York, (1986) 241

51. S.A.Attia, S.F. EI-Mashtloy and M.F. EI_Shabat, Polyhedron, 22, (2003) 895

52. M. Kato, K. Najikama, T. Yoshikawa, M. Hirothsu and M. Kojima, Inorg. Chim. Acta, 311, (2000) 619

53. K. Nakomoto, Infrared and Raman Spectra of Inorganic and Coordination Compound, John Wiley & Son: New York, (1978) 344.

54. A. Bruce, J.L. Curbin, P.L. Dahlstrom, J.R. Hyde, M. Minelli, E.I. Stiefel, J.T. Spence and J. Zubieta, Inorg. Chem., 21, (1982) 917.

55. W. Otting, Chem. Ber., 89, (1956) 2887

56. R. Dinda, P. Sengupta, S. Ghosh and W.S. Sheldrick, Eur. J. Inorg. Chem. ,(2003) 363 and references there in.

57. S.S. Singh and C.B.S. Sengar, Ind. J. Chem., 7, (1969) 812.

58. S.M. Horner and S.Y. Tyree, Inorg. Chem., 1, (1962) 122.

(5)

59. N.M. Karayannis, L.L. Pytlewski and C.M. Mikulski, Coord. Chem. Rev., 11, (1973) 93.

60. R.G. Garvey, J.H. Nelson and R.O. Ragsdale, Coord. Chem. Rev., 3, (1968) 375.

61. W. Kemp, Organic Spectroscopy, 3rd ed., Palgrave Publisher, (1991).

62. B.Ji, Q. Du, K. Ding, Y. Li and Z. Zhou, Polyhedron, 15, (1996) 403.

63. L.M. Fostiak, I. Garcia, J.K. Swearingen, E. Bermejo, A. Castineiras and D.X. West, Polyhedron, 22, (2003) 83.

64. J.H. Enemark and C.G. Young, Adv. Inorg. Chem., 40, (1993) 1.

65. C.S.J. Chang and J.H. Enemark, Inorg. Chem., 30, (1991) 683.

66. A. Rana, R. Dinda, P. Sengupta and S. Ghosh Polyhedron, 21, (2002) 1023.

67. C. Bustos, O. Burckhardt, R. Schrebler, D. Corrillo, A.M. Arif, A.H. Cowley and C.M. Nunn, Inorg. Chem., 29, (1990) 3996.

68. K.B. Bernard, M. Bruck, S. Huber, C. Grittini, J.H. Enemark, R.W. Gab le and A.G.

Wedd, Inorg. Chem.,36, (1997) 637.

69. H.A. El-Boraey, J. Thermal Anal. Calorim., 81, (2005) 339.

70. K.R. Surati and B.T. Thaker, J. Coord. Chem., 94(1), (2008) 247.

71. J. Topich, Inorg. Chem., 20, (1981) 3704.

72. S. Purohit, A Koley, P. Prasad, P.T. Manoharan and S. Ghosh, Inorg. Chem., 28, (1989) 3735.

73. a) S. Gupta, A.K. Barik, S. Pal, A. Hazra, S. Roy, R.J. Butcher and S.K. Kar, Polyhedron, 26, (2007) 133. . b) Jia Li, Ge Wang, Zhan Shi, Mu Yang, and Rudy L.

Luck, Structural Chem., 20 (2009) 869.

(6)

74. C. Bustos, O. Burckhardt, R. Schrebler, D. Carrillo, A.M. Arif, A.H. Cowley and C.M.

Nunn, Inorg. Chem., 29, (1990) 3996.

75. I. Buchan and C.D. Garner, J. Am. Chem. Soc., 106, (1984) 3035.

76. O.A. Rajan and A. Chakravorty, Inorg. Chem., 20, (1981) 660.

77. W. Fuller, J. Phys. Chem., 63 (1959) 1705.

78. J.A. Craig, E.W. Harlan, B.S. Snyder, M.A. Whitener and R.H. Holm, Inorg. Chem., 28, (1989) 2082.

79. J.M. Bregeault, J. Chem. Soc., Dalton Trans., (2003) 3289.

80. K.A. Jorgensen, Chem. Rev., 89, (1989) 431.

81. S.Ray, R.P. Hedge, A.K. Das and N. Shamala, Tetrahedon, 62, (2006) 9603 82. J. Rudolph, J.P. Chiang and K.B. Sharpless, J. Am. Chem. Soc., 119, (1997) 6189.

83. W.A. Herrmann, H. Ding, R.M. Kratzer, F.E. Kuhn, J.J. Haider and R.W. Fischer, J.

Organomet. Chem., 549 (1997) 319.

84. W.A. Herrmann, R.M. Kratzer and H. Ding, Glass, J. Organomet. Chem., 555, (1998) 293.

85. C. Coperet, H. Adolfsson and K.B. Sharpless, Chem. Commun., 16 (1997) 1565.

86. H. Adolfsson, A. Converso and K.B. Sharpless, Tetrahedron Lett., 40, (1999) 3991.

87. H. Adolfsson, A. Converso and J.P. Chiang, J. Organomet. Chem., 65, (2000) 8651.

88. F.E. Kuhn, A.M. Santos, P.W. Roesky, E. Herdtweck, W. Scherer, P. Gisdakis, I.V.

Yudanov, C. Di Valentin and N. Rosch, Chem. Eur. J., 5, (1999) 3603.

89. P. Ferreira, W.M. Xue, E. Bencze, E. Herdweck and F.E. Kuhn, Inorg. Chem. 40,

Rujukan

DOKUMEN BERKAITAN

Overall, this study covers on the preparation and characterization of polyimide/inorganic composite films in which inorganic materials used consists of

Many frequency domain methods have been proposed for digital image watermarking, and it is well known that transform domain watermarking schemes have better

Schwederski, Bioinorganic Chemistry: Inorganic Elements in the Chemistry of Life, John Wiley & Sons, New York, (1996).. Abo-Aly

Obtained results highlighted the poor microbiological and sanitary quality of goat’s and ewe’s milk produced in

The presence of graphene and Ag composition con finned using Raman Spectroscopy and Energy Dispersive X-ray Spectroscopy (EDX). Raman spectra shows the intensity of LSPR generated

For IFR flights, the time at which it is estimated that the aircraft will arrive over that designated point, defined by reference to navigation aids, from which it is intended that

The purpose of this study is to validate and assess the hypothesized relationships among the innovation capabilities (Idea Generation capability, Design capability,

\\h,i1e,~e ,potential of th~ population both in tenns of human resources and in terms of its contribution to productivity increases broadly defined is acknowledged; there is