DOI QR코드

DOI QR Code

Molecular Dynamics Simulation Studies of Zeolite A. Ⅵ. Vibrational Motion of Non-Rigid Zeolite-A Framework

  • Published : 1998.04.20

Abstract

In the present paper, we report a molecular dynamics (MD) simulation of non-rigid zeolite-A framework only as the base case for a consistent study of the role of intraframework interaction on several zeolite-A systems using the same technique in our previous studies of rigid zeolite-A frameworks. Usual bond stretching, bond angle bending, torsional rotational, and non-bonded Lennard-Jones and electrostatic interactions are considered as intraframework interaction potentials. The comparison of experimental and calculated structural parameters confirms the validity of our MD simulation for zeolite-A framework. The radial distribution functions of non-rigid zeolite-A framework atoms characterize the vibrational motion of the framework atoms. Mean square displacements are all periodic with a short period of 0.08 ps and a slow change in the amplitude of the vibration with a long period of 0.53 ps. The displacement auto-correlation (DAC) and neighbor-correlation (DNC) functions describe the up-and-down motion of the framework atoms from the center of α-cage and the back-and-forth motion on each ring window from the center of each window. The DAC and DNC functions of the framework atoms from the center of α-cage at the 8-ring windows have the same period of the up-and-down motion, but those functions from the center of 8-ring window at the 8-ring windows are of different periods of the back-and-forth motion.

Keywords

References

  1. Gazz. Chim. Ital. v.116 Demontis, P.;Suffritti, G. B.;Alberti, A.;Quartieri, S.;Fois, E. S.;Gamba, A.
  2. Dynamics of Molecular Crystals Demontis, P.;Suffritti, G. B.;Quartieri, S.;Fois, E. S.;Gamba, A.;Lascombe, J.(Ed.)
  3. Zeolites v.7 Demontis, P.;Suffritti, G. B.;Quartieri, S.;Fois, E. S.;Gamba, A.
  4. J. Phys. Chem. v.92 Demontis, P.;Suffritti, G. B.;Quartieri, S.;Fois, E. S.;Gamba, A.
  5. J. Phys. Chem. v.94 Demontis, P.;Fois, E. S.;Suffritti, G. B.;Quartieri, S.
  6. J. Chem. Soc., Faraday Trans. v.87 Demontis, P.;Suffritti, G. B.;Quarieri, S.;Gamba, A.;Fois, E. S.
  7. J. Chem. Phys. v.90 Cohen de Lara, E.;Kahn, R.;Goulary, A. M.
  8. J. Phys. Chem. v.42 Cohen de Lara, E.;Kahn, R.
  9. Chem. Phys. Lett. v.153 Yashonath, S.;Demontis, P.;Klein, M. L.
  10. Mol. Sim. v.4 den Ouden, C. J. J.;Smit, B.;Wielers, A. F. H.;Jackson, R. A.;Nowak, A. K.
  11. J. Phys. Chem. v.93 Yashonath, S.;Demontis, P.;Klein, M. L.
  12. Chem. Phys. Lett. v.145 Leherte, L.;Lie, G. C.;Swamy, K. N.;Clementi, E.;Derouane, E. G.;Andre, J. M.
  13. J. Molec. Catal. v.54 Leherte, L.;Andre, J. M.;Vercauteren, D. P.;Derouane, E. G.
  14. Comput. Chem. v.15 Leherte, L.;Andre, J. M.;Derouane, E. G.;Vercauteren, D. P.
  15. J. Chem. Soc., Faraday Trans. v.87 Leherte, L.;Andre, J. M.;Derouane, E. G.;Vercauteren, D. P.
  16. J. Phys. Chem. v.94 Pickett, S. D.;Nowak, A. K.;Thomas, J. M.;Peterson, B. K.;Swift, J. F. P.;Cheetham, A. K.;den Ouden C. J. J.;Smit, B.;Post, M. F. M.
  17. J. Phys. Chem. v.95 Nowak, A. K.;den Ouden C. J. J.;Pickett, S. D.;Smith, B.;Cheetham, A. K.;Post, M. F. M.;Thomas, J. M.
  18. J. Phys. Chem. v.92 Shin, J. M.;No, K. T.;Jhon, M. S.
  19. Bull. Kor. Chem. Soc. v.13 Moon, G. K.;Choi, S. G.;Kim, H. S.;Lee, S. H.
  20. Bull. Kor. Chem. Soc. v.14 Moon, G. K.;Choi, S. G.;Kim, H. S.;Lee, S. H.
  21. J. Phys. Chem. v.98 Lee, S. H.;Moon, G. K.;Choi, S. G.;Kim, H. S.
  22. Mol. Sim. v.17 Choi, S. G.;Lee, S. H.
  23. J. Phys. Chem. B v.101 Lee, S. H.;Choi, S. G.
  24. J. Am. Chem. Soc. v.102 Pluth, J. J.;Smith, J. V.
  25. J. Am. Chem. Soc. v.105 Pluth, J. J.;Smith, J. V.
  26. Kor. J. Crystal. v.1 Jang, S. B.;Han, Y. W.;Kim, D. S.;Kim, Y.
  27. Acta Crystallogr. v.22 Seff, K.;Shoemaker, D. P.
  28. Z. Kristallogr. v.133 Gramlich, V.;Meier, W. M.
  29. J. Am. Chem. Soc. v.103 McCusker, L. B.;Seff, K.
  30. J. Am. Chem. Soc. v.113 Nicholas, J. B.;Hopfinger, A. J.;Trouw, F. R.;Iton, L. X.
  31. J. Phys. Chem. B v.101 Faux, D. A.;Smith, W.;Forester, T. R.
  32. J. Phys. Chem. v.77 Yanagida, R. Y.;Amaro, A. A.;Seff, K.
  33. Proc. R. Soc. London v.A373 de Leeuw, S. W.;Perram, J. W.;Smith, E. R.
  34. Comput. Phys. Commun. v.25 Anastasiou, N.;Fincham, D.
  35. Zeolites v.8 Genechten, K. A. V.;Mortier, W. J.
  36. J. Reine. Angew. Math. v.Ⅳ Gauss, K. F.
  37. Numerical initial value problems in ordinary differental equation Gear, C. W.
  38. Thermal vibrations in Crystallography Willis, B. T. M.;Pryor, A. W.
  39. ORTEP: A FORTRAN Thermal Ellipsoid Plot Program; ORNL-3794 Johnson, C. K.
  40. Lee, S. H.;Choi, S. G.
  41. J. Chem. Phys. v.74 Behrens, P. H.;Wilson, K. R.