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Bonding xenon and krypton on the surface of uranium dioxide single crystal


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1. Bellamy, R. G., & Rich, J. B. (1969). Grain boundary gas release and swelling in high burn-up uranium dioxide. J. Nucl. Mater., 33(1), 64-76.10.1016/0022-3115(69)90008-7Search in Google Scholar

2. Hargreaves, R., & Collins, D. M. (1976). A quantitative model for fi ssion gas release and swelling in irradiated uranium dioxide. J. Br. Nucl. Energy Soc., 15, 311-318.Search in Google Scholar

3. Ito, K., Iwasaki, R., & Yoshihiko, I. (1985). Finite element model of fi ssion gas release from UO2 fuel. J. Nucl. Sci. Technol., 22(2), 129-138.10.1080/18811248.1985.9735636Search in Google Scholar

4. Mac Iwan, J. R., & Stevens, W. H. (1964). Xenon diffusion in UO2. J. Nucl. Mater., 11(1), 77-93.10.1016/0022-3115(64)90123-0Search in Google Scholar

5. Nakajima, T., & Saito, H. (1987). A comparison between fi ssion gas release data and FEMAXI-IV. Nucl. Eng. Des., 101(3), 267-279.10.1016/0029-5493(87)90055-0Search in Google Scholar

6. Ray, I. L. F., Thiele, H., & Matzke, H. (1992). Transmission electron microscopy study of fi ssion product behaviour in high burnup UO2. J. Nucl. Mater., 188, 90-95.10.1016/0022-3115(92)90458-WSearch in Google Scholar

7. Rest, J., & Cronenberg, W. A. (1987). Modeling the behavior of Xe, I, Cs, Te, Ba and Sr in solid and liquefi ed fuel during severe accidents. J. Nucl. Mater., 150(2), 203-225.10.1016/0022-3115(87)90076-6Search in Google Scholar

8. Szuta, M. (1994). The diffusion coeffi cient of fi ssion- -product rare gases in single crystal uranium dioxide during irradiation. J. Nucl. Mater., 210, 178-186.10.1016/0022-3115(94)90236-4Search in Google Scholar

9. White, R. J., & Tucker, M. O. (1983). A new fi ssion-gas release model. J. Nucl. Mater., 118, 1-38.10.1016/0022-3115(83)90176-9Search in Google Scholar

10. Zimmermann, H. (1978). Investigations on swelling and fi ssion gas behaviour in uranium dioxide. J. Nucl. Mater., 75, 154-161.10.1016/0022-3115(78)90039-9Search in Google Scholar

11. Anderson, D. A., Uberuaga, B. P. P., & Nericar, N. (2011). U and Xe transport in UO2±x: Density functional theory calculations. Phys. Rev. B, 84, 054105-17.10.1103/PhysRevB.84.054105Search in Google Scholar

12. Burbach, J., & Zimmermann, H. (1985). Spaltgasverhalten in bestrahltem UO2 bei out-of-pile-Gluehungen von 1400 bis 2000`°C. KfK, 3997, 1-39.Search in Google Scholar

13. Une, K., & Kashibe, S. (1990). Fission gas release during post irradiation annealing of BWR fuels. J. Nucl. Sci. Technol., 27, 1002-1016.10.1080/18811248.1990.9731285Search in Google Scholar

14. Dąbrowski, L., & Szuta, M. (2012). Ab initio study of helium atoms immobilization in UO2 crystals. Nukleonika, 57(3), 337-343.Search in Google Scholar

15. Dąbrowski, L., & Szuta, M. (2013). Diffusion of helium in the perfect uranium and thorium dioxide single crystals. Nukleonika, 58(2), 295-300.Search in Google Scholar

16. Li, J., Liang, B. E., & Andrews, L. (2002). Noble gas-actinide compounds: complexation of the CUO molecule by Ar, Kr and Xe atoms in noble gas matrices. Science, 295(22), 2242-2245.10.1126/science.1069342Search in Google Scholar

17. Turnbull, J. A. (1980). Review of irradiation induced resolution in oxide fuels. Radiat. Eff., 53(3/4), 243-249.10.1080/00337578008207119Search in Google Scholar

18. Dąbrowski, L., & Szuta, M. (2013). Bonding xenon on the surface of uranium dioxide single crystal. Nukleonika, 58(4), 453-458.Search in Google Scholar

19. www.abinit.org.Search in Google Scholar

20. Troullier, N., & Martins, J. L. (1991). Effi cient pseudopotentials for plane - wave calculations. Phys. Rev. B, 43(3), 1993-2006.10.1103/PhysRevB.43.1993Search in Google Scholar

21. Beauvy, M. (1992). Nonideality of the solid solution in (U,Pu)O2 nuclear fuels. J. Nucl. Mater., 188, 232-238.10.1016/0022-3115(92)90477-3Search in Google Scholar

22. Razavy, M. (2003). Quantum theory of tunneling. River Edge: World Scientifi c Publishing.10.1142/4984Search in Google Scholar

23. Feynmann, R. P., Leighton, R. B., & Sands, M. L. (1974). The Feynmann lectures on physics. (Vol. 3, pp. 125-130). Warsaw: PWN.Search in Google Scholar

24. Grabert, H., & Schober, H. R. (1997). Theory of tunneling and diffusion of light interstitial in metals. In H. Wipf (Ed.) Hydrogen in metals III: Properties and applications (pp. 5-49). Topics in applied physics. Vol. 73. Berlin: Springer.Search in Google Scholar

eISSN:
0029-5922
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Chemistry, Nuclear Chemistry, Physics, Astronomy and Astrophysics, other