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Abstract:

A theoretical study of two series of small clusters, Si 3O n-and Si 6O n -(n=1-6), has been carried out. The minimum energy structures were produced adding an electron to neutral species followed by relaxation at the B3LYP-6-311G(2d) level. The vertical ionization energies (VIEs) were computed using the electron propagator theory (EPT) in two approximations, Unrestricted Outer Valence Green Functions (UOVGF) and partial third-order approximation (P3). In the series Si 3O n -the theoretical VIEs of the minimum energy structures agree well with experimental data. For the second series there are not experimental VIEs, and the theoretical results are predictions. The performance of EPT methodologies in conjunction with all-electron or pseudopotentials (PP) calculations is analyzed. The conjunction of P3 and PP approximation proves to be the most efficient and economical methodology to calculate the VIEs of small anionic silicon oxide clusters. In the series Si 6O n -different channels of fragmentation have been calculated. The results suggest that the fragments do not have drastic geometric changes and the anionic fragment corresponds to the atoms where the spin density of the initial large cluster is localized. The Fukui function calculated over selected optimized fragments predicts adequately the interaction between them to form large stable clusters. © 2009 American Chemical Society.

Registro:

Documento: Artículo
Título:Theoretical Study of the Structure and Electronic Properties of Si 3O n -and Si 6O n -(n=1-6) Clusters. Fragmentation and Formation Patterns
Autor:Tiznado, W.; Oña, O.B.; Caputo, M.C.; Ferraro, M.B.; Fuentealba, P.
Filiación:Departamento de Ciencias Químicas, Facultad de Ecología y Recursos Naturales, Universidad Andres Bello, AV. República 275, Santiago-Chile, Chile
Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Argentina
Departamento de Física, Universidad de Chile, Las Palmeras 3425, Santiago-Chile, Chile
Año:2009
Volumen:5
Número:9
Página de inicio:2265
Página de fin:2273
DOI: http://dx.doi.org/10.1021/ct900320r
Título revista:Journal of Chemical Theory and Computation
Título revista abreviado:J. Chem. Theory Comput.
ISSN:15499618
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_15499618_v5_n9_p2265_Tiznado

Referencias:

  • Connerade, J.P., Solov'yov, A.V., Greiner, W., (2002) Europhysics News, 33, p. 200
  • (2001) NATO Advanced Study Institute, Session LXXIII, Summer School "Atomic Clusters and Nanoparticles", , Guet, C., Hobza, P., Spiegelman, F., David, F. Eds.; Les Houches, France, July 2-28,2000 EDP Sciences and Springer Verlag: Berlin, New York, London, Paris, Tokyo
  • de Heer, W.A., (1993) Rev. Mod. Phys., 65, p. 611
  • (1994) Clusters of Atoms and Molecules, Theory, Experiment and Clusters of Atoms, p. 52. , Haberland, H., Ed.; Springer Series in Chemical Physics, Springer: Berlin, Heidelberg, New York
  • Ekardt, W., (1999) Metal Clusters, pp. 29-68. , Ekardt, W., Ed.; Wiley: New York
  • Koopmans, T., (1933) Physica, 1, p. 104
  • Cederbaum, L.S., Schirmer, J., Domcke, W., von Niesse (1978) W. Int. Quantum Chem., 14, p. 593
  • Cederbaum, L.S., (1975) J. Phys. B, 8, p. 290
  • von Niessen, W., Shirmer, J., Cederbaum, L.S., (1984) Comput. Phys. Rep., 1, p. 57
  • Zakrzewski, V.G., Ortiz, J.V., (1994) Int. J. Quantum Chem., Quantum Chem. Symp., 28, p. 23
  • Zakrzewski, V.G., Ortiz, J.V., (1995) Int. J. Quantum Chem., 53, p. 583
  • Ortiz, J.V., (1989) Int. J. Quantum Chem., Quantum Chem. Symp., 23, p. 321
  • Lin, J.S., Ortiz, J.V., (1990) Chem. Phys. Lett., 171, p. 197
  • Zakrzewski, V.G., Ortiz, J.V., Nichols, J.A., Heryadi, D., Yeager, D.L., Golab, J.T., (1996) Int. J. Quantum Chem., 60, p. 29
  • Ortiz, J.V., (1999) Adv. Quantum Chem., 35, p. 33
  • Ortiz, J.V., (1996) J. Chem. Phys., 104, p. 7599
  • Ortiz, J.V., Zakrzewski, V.G., Dolgounitcheva, O., (1997) Conceptual Trends in Quantum Chemistry, 3, p. 465. , Kryachko, E. S., Ed.; Kluwer: Dordrecht
  • Holmes, D.L., (1969) Elements of Physical Geology, , Ronald Press: New York; Chapter 3
  • Morey, G.W., (1954) The Properties of Glass, p. 1. , 2nd ed.; Reinhold: New York; Chapter 1
  • Desurvire, E., (1994) Phys. Today, 47, p. 20
  • Wang, N., Tang, Y.H., Zhang, Y.F., Lee, C.S., Lee, S.T., (1998) Phys. Rev. B, 58, pp. R16024
  • Anderson, J.S., Ogden, J.S., (1969) J. Chem. Phys., 51, p. 4189
  • Wang, L.S., Nicholas, J.B., Dupuis, M., Wu, H., Colson, S.D., (1997) Phys. Rev. Lett., 78, p. 4450
  • Wang, L.S., Desai, S.R., Wu, H., Nicholas, J.B.Z., (1997) Phys. D, 40, p. 36
  • Wang, L.S., Wu, H., Desai, S.R., Fan, J., Colson, S.D., (1996) J. Phys. Chem., 100, p. 8697
  • Chelikowsky, J.R., (1998) Phys. Rev. B, 57, p. 3333
  • Snyder, L.C., Raghavachari, K.J., (1984) J. Chem. Phys., 80, p. 5076
  • Zhang, R.Q., Chu, T.S., Cheung, H.F., Wang, N., Lee, S.T., (2001) Phys. Rev. B, 64, p. 113304
  • Song, J., Choi, M., (2002) Phys. Rev. B, 65, pp. 241302R
  • Nayak, S.K., Rao, B.K., Jena, P., (1998) J. Chem. Phys., 109, p. 1245
  • Chu, T.S., Zhang, R.Q., Cheung, H.F., (2001) J. Chem. Phys, 105, p. 1705
  • Caputo, M.C., Oña, O.B., Ferraro, M.B.J., (2009) Chem. Phys., 130, p. 134115
  • Zang, Q.J., Su, Z.M., Lu, W.C., Wang, C.Z., Ho, K.M., (2006) J. Phys. Chem. A, 110, p. 8151
  • Becke, A.D., (1993) J. Chem. Phys, 98, p. 5648
  • McLean, A.D., Chandler, G.S., (1980) J. Chem. Phys., 72, p. 5639
  • Krishnan, B.R., Binkley, J.S., Seeger, R., Pople, J.A., (1980) J. Chem. Phys., 72, p. 650
  • Ortiz, J.V., (1997) Computational Chemistry: Reviews of Current Trends, 2, p. 1. , Leszczynski, J., Ed.; World Scientific: Singapore
  • Igel-Mann, G., Stoll, H., Preuss, H., (1988) Mol. Phys., 65, p. 1321
  • Sadlej, A.J., (1995) Collect. Czech. Chem. Commun., 53
  • Tiznado, W.A., Fuentealba, P., Ortiz, J.V., (2005) J. Chem. Phys., 123, p. 144314
  • Yang, W., Mortier, W.J., (1986) J. Am. Chem. Soc., 108, p. 5708
  • Reed, A.E., Curtiss, L.A., Weinhold, F., Intermolecular Interactions from a Natural Bond Orbital (1988) Donor-Acceptor Viewpoint. Chem. Rev., 88 (6), pp. 899-926
  • Reed, A.E., Weinstock, R.B., Weinhold, F., Natural-Population Analysis (1985) J. Chem. Phys., 83, pp. 735-746
  • Reed, A.E., Weinhold, F., Natural Bond Orbital Analysis of Near-Hartree-Fock Water Dimer (1983) J. Chem. Phys., 78, pp. 4066-4073
  • Breneman, C.M., Wiberg, K.B., Determining Atom-Centered Monopoles from Molecular Electrostatic Potentials-The Need for High Sampling Density in Formamide Conformational-Analysis (1990) J. Comput. Chem., 11 (3), pp. 361-373
  • Frisch, M.J., Trucks, G.W., Schlegel, H.B., Scuseria, G.E., Robb, M.A., Cheeseman, J.R., Montgomery J.A., Jr., Pople, J.A., (2004) Gaussian 03, revision E.01, , Gaussian, Inc.: Wallington, CT
  • Flükiger, P., Lüthi, H.P., Portmann, S., Weber, J., (2000), Swiss National Supercomputing Centre CSCS, Manno, Switzerland; Dunning T.H., Jr., (1989) J. Chem. Phys., 90, p. 1007
  • Woon, D.E., Dunning T.H., Jr., (1993) Chem. Phys., 98, p. 1358
  • Wang, H., Sun, J., Lu, W.C., Sun, C.C., Wang, C.Z., Ho, K.M., (2008) J. Phys. Chem. C, 112, p. 7097
  • Tiznado, W., Oña, O.B., Bazterra, V.E., (2005) J. Chem. Phys., 123, p. 214302

Citas:

---------- APA ----------
Tiznado, W., Oña, O.B., Caputo, M.C., Ferraro, M.B. & Fuentealba, P. (2009) . Theoretical Study of the Structure and Electronic Properties of Si 3O n -and Si 6O n -(n=1-6) Clusters. Fragmentation and Formation Patterns. Journal of Chemical Theory and Computation, 5(9), 2265-2273.
http://dx.doi.org/10.1021/ct900320r
---------- CHICAGO ----------
Tiznado, W., Oña, O.B., Caputo, M.C., Ferraro, M.B., Fuentealba, P. "Theoretical Study of the Structure and Electronic Properties of Si 3O n -and Si 6O n -(n=1-6) Clusters. Fragmentation and Formation Patterns" . Journal of Chemical Theory and Computation 5, no. 9 (2009) : 2265-2273.
http://dx.doi.org/10.1021/ct900320r
---------- MLA ----------
Tiznado, W., Oña, O.B., Caputo, M.C., Ferraro, M.B., Fuentealba, P. "Theoretical Study of the Structure and Electronic Properties of Si 3O n -and Si 6O n -(n=1-6) Clusters. Fragmentation and Formation Patterns" . Journal of Chemical Theory and Computation, vol. 5, no. 9, 2009, pp. 2265-2273.
http://dx.doi.org/10.1021/ct900320r
---------- VANCOUVER ----------
Tiznado, W., Oña, O.B., Caputo, M.C., Ferraro, M.B., Fuentealba, P. Theoretical Study of the Structure and Electronic Properties of Si 3O n -and Si 6O n -(n=1-6) Clusters. Fragmentation and Formation Patterns. J. Chem. Theory Comput. 2009;5(9):2265-2273.
http://dx.doi.org/10.1021/ct900320r