Theoretical Study of Copper (II) Oxide Clusters and their Interaction with CO

Article Preview

Abstract:

Copper (II) oxide clusters (CuO)n with n = 1 – 4, 6 have been calculated by DFT method with the exchange-correlation functional B3LYP. The structural, energy and electronic properties have been studied. Much attention was given to the interaction between CO and active centers of the clusters. The most probable orientation of CO on the metal oxide surface has been determined and the stability of clusters has been evaluated.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

358-363

Citation:

Online since:

December 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Y.W. Zhu, T. Yu, F.C. Cheong, X.J. Xui, C.T. Lim, V.B.C. Tan, J.T.L. Thong and C.H. Sow: Nanotechnology Vol. 16 (2005), p.88.

Google Scholar

[2] F. Teng, W. Yao, Y. Zheng, Y. Ma, Y. Teng, T. Xu, S. Liang, and Y. Zhu: Sensors and Actuators B: Chemical Vol. 134 (2008), p.761.

DOI: 10.1016/j.snb.2008.06.023

Google Scholar

[3] X.Y. Xue, L.L. Xing, Y.J. Chen, S.L. Shi, Y.G. Wang, and T.H. Wang: J. Phys. Chem. C Vol. 112 (2008), p.12157.

Google Scholar

[4] M. Abaker, A. Umar, S. Baskoutas, S.H. Kim, and S.W. Hwang: J. Phys. D: Appl. Phys. Vol. 44 (2011), p.155405.

Google Scholar

[5] A. Zainelabdin, S. Zaman, G. Amin, O. Nur, M. Willander: Appl. Phys A Vol. 108 (2012), p.921.

Google Scholar

[6] V.A. Gubanov, E.Z. Kurmayev, L.A. Ivanovsky. Quantum chemistry of solid state (Nauka Moscow, 1984) (in Russian).

Google Scholar

[7] X. Lu, X. Xu, N. Wang, Q. Zhang, M. Ehara, H. Nakatsuji: Chem. Phys. Letters Vol. 291 (1998), p.445.

Google Scholar

[8] X. Xu, H. Nakatsuji, X. Lu, M. Ehara, Y. Cai, N.Q. Wang, Q.E. Zhang.: Theoretical Chemistry Accounts Vol. 102 (1999), p.170.

Google Scholar

[9] M.W. Schmidt, K.K. Baldridge, J.A. Boatz, S.T. Elbert, M.S. Gordon, J.H. Jensen, S. Koseki, N. Matsunaga, K.A. Nguyen, S. Su, T.L. Windus, M. Dupuis, J.A. Montgomery: J. Comput. Chem. Vol. 14 (1993), p.1347.

DOI: 10.1002/jcc.540141112

Google Scholar

[10] G-T. Bae, B. Dellinger and R.W. Hall: J. Phys. Chem. A Vol. 115 (2011), p. (2087).

Google Scholar

[11] M.L. Polak, M.K. Gilles, J. Ho, W.C. Lineberger: J. Phys. Chem. Vol. 95 (1991), p.3460.

Google Scholar

[12] F.P. Koffyberg and F.A. Benko: J. Appl. Phys. Vol. 53 (1982), p.1173.

Google Scholar

[13] B. Balamurugan and B.R. Mehta: Thin Solid Films Vol. 396 (2001), p.90.

Google Scholar

[14] H. Kidowaki, T. Oku, T. Akiyama, A. Suzuki: J. Mater. Science Research. Vol. 1 (2012), p.138.

Google Scholar

[15] M. Izaki, Y. Yamane, J. Sasano, T. Shinagawa and M. Inoue: Electrochem. Solid-State Lett. Vol. 14 (2011), p.30.

Google Scholar