Hydrolysis of BNPP Catalyzed by the Dodecyliminodiacetate Nickel (II) Complexes

Article Preview

Abstract:

One novel dodecyliminodiacetate nickel (II) complex were synthesized and characterized, and these complexes were used as mimic hydrolytic in catalytic hydrolysis of bis (p-nitrophenyl) phosphate (BNPP). The analysis of specific absorption spectra of the hydrolytic reaction systems indicated that the catalytic hydrolysis involved the key intermediates formed by BNPP with nickel (II) complexes. The kinetic parameter of BNPP catalytic hydrolysis has been calculated and the activation energy for the catalytic hydrolysis is 95.26kJ·mol-1.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

123-127

Citation:

Online since:

August 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Rick. L. Hegg , Judith N. Burstyn. Coordination Chemistry Reviews Vol. 173(1998), p.133.

Google Scholar

[2] Li, J. Z., Feng, F. M., Xu, B., Jiang, W. D., Qin, S.Y. Transition Met. Chem Vol. 33 (2008), p.655.

Google Scholar

[3] Pang, Q. H., Zang, R. R., Kang, G. L., Li, J. M., Hu. W., Meng, X. G., Zeng X.C. J. Disper. Sci. Technol. Vol. 27( 2006), p.671.

Google Scholar

[4] Meng,Y., Jiang, F. B., Hu,W., Meng, X.G., Yu, X. Q., Zeng, X. C. J. Disper. Sci. Technol. Vol. 27 (2006), p.15.

Google Scholar

[5] Jiang, W. D., Xu, B., Lin, Q., Li, J. Z., Liu, F., Zeng, X.C., Chen, H. Colloids Surf. A: Physicochem. Eng. Aspects Vol. 315(2008), p.103.

Google Scholar

[6] Xu, B., Jiang, W. D., Li, J.Z. J. Disper. Sci. Tech. Vol. 29(2008), p.1319.

Google Scholar

[7] Li,J.Z., Li,H.B., Feng F.M., Xie,J. Q., Li, S. X., Zhou, B., Qin, S.Y. Chin. J. Chem. Vol. 23(2005), p.678.

Google Scholar

[8] Xie, J.Q., Li, J., Sang, X.M., Wan, M., Chen, G.X. Reaction Kinetics and Mechanism Vol. 31(2006), p.189.

Google Scholar

[9] Jiang, F.B., Jiang, B.Y., Cao Y.S., Meng, X.G., Yu, X.Q., Zeng, X.C. Colloid. Surface. A. Vol. 254(2005), p.91.

Google Scholar

[10] Xie, J.Q., Chen, Y., Yan, H., Chen, G.X., Ou, Z.W., Xie, B. Reaction Kinetics and Mechanism Vol. 31 (2006), 31(1): p.29.

Google Scholar

[11] Jiang, W.,D., Xu. B., Li, J.Z., Lin, Q., Zeng, X.C., Chen, H. Reaction Kinetics and Mechanism, Vol. 31(2006), p.11.

Google Scholar

[12] Zhang, Y., Xie, J.Q., Li, C., Shang, H.L., Wang, M. Reaction Kinetics and Mechanism, Vol. 33(2008), p.349.

Google Scholar

[13] Kramer, R. Coord. Chem. Rev. Vol. 182 (1999), p.243.

Google Scholar

[14] Jurek, P., Martell, A.E. Inorg. Chim. Acta. Vol. 287 (1999), p.47.

Google Scholar

[15] Roigk, A.; Yescheulova, O. V.; Schneider H. J. Org. Lett. Vol. 1 (1999), p.833.

Google Scholar

[16] Hu, W., Wang,Y., Li, J. Z., Du, J., Meng, X.G., Hu, C.W., Zeng, X. C. Chin. J. Chem. Vol. 24 (2006), p.1498.

Google Scholar

[17] Hu, W., Wang Y., Yan, J., Li, J.Z., Meng, X.G., Hu, C.W., Zeng, X.C. J. Dispersion Sci. Technol. Vol. 8 ( 2006), p.1085.

Google Scholar

[18] Wanger, M. R., Walker, F. A. Inorg. Chem. Vol. 22 (1983), p.3021.

Google Scholar

[19] Itoh, T., Hisada, H., Usui,Y. Inorg. Chim. Acta. Vol. 283 (1998) , p.51.

Google Scholar

[20] Young, M. J., Wahnon, D., Hynes, R. C., Chin, J. J. Am. Chem. Soc. Vol. 117 (1995), p.9441.

Google Scholar