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Article cité :
J. Pannetier , G. Denes , M. Durand , J.L. Buevoz
J. Phys. France, 41 9 (1980) 1019-1024
Citations de cet article :
18 articles
Georges Dénès, M. Cecilia Madamba and Abdualhafed Muntasar 1781 020007 (2016) https://doi.org/10.1063/1.4966003
Georges Dénès, M. Cecilia Madamba, Hocine Merazig, Abdualhafed Muntasar and Zhimeng Zhu 1781 020006 (2016) https://doi.org/10.1063/1.4966002
Compounds based on Group 14 elements: building blocks for advanced insulator dielectrics design
A. Mannodi-Kanakkithodi, C. C. Wang and R. Ramprasad Journal of Materials Science 50 (2) 801 (2015) https://doi.org/10.1007/s10853-014-8640-2
Using Mössbauer spectroscopy to choose the sites that can be occupied by divalent tin
Georges Dénès, Hocine Merazig and Abdualhafed Muntasar Hyperfine Interactions 226 (1-3) 79 (2014) https://doi.org/10.1007/s10751-014-1012-0
Molecular dynamics simulation of SnF2 nanostructures in the internal channels of single-walled carbon nanotubes
I. Yu. Gotlib, A. K. Ivanov-Schitz, I. V. Murin, et al. Physics of the Solid State 56 (7) 1472 (2014) https://doi.org/10.1134/S1063783414070166
Mössbauer Spectroscopy
Georges Dénés, Abdualhafed Muntasar, M. Cecilia Madamba and Hocine Merazig Mössbauer Spectroscopy 202 (2013) https://doi.org/10.1002/9781118714614.ch11
Covalent Bonds in α‐SnF2 Monitored by J‐Couplings in Solid‐State NMR Spectra
Thomas Bräuniger, Stefan Ghedia and Martin Jansen Zeitschrift für anorganische und allgemeine Chemie 636 (13-14) 2399 (2010) https://doi.org/10.1002/zaac.201000176
AC conductivity and scaling studies of polycrystalline SnF2
Laxmi Narayana Patro and K. Hariharan Materials Chemistry and Physics 116 (1) 81 (2009) https://doi.org/10.1016/j.matchemphys.2009.02.056
Mössbauer Spectroscopy in Materials Science
G. Dénès, M. C. Madamba, A. Muntasar, et al. Mössbauer Spectroscopy in Materials Science 25 (1999) https://doi.org/10.1007/978-94-011-4548-0_3
Use of Mössbauer Spectroscopy for the Characterization of Order/Disorder Phenomena in Tin(II) Containing Ionic Conductors and for Making Predictions Regarding Possible Electron Contribution to the Conduction
Georges Dénès, M. Cecilia Madamba, Abdualhafeed Muntasar, et al. MRS Proceedings 548 (1998) https://doi.org/10.1557/PROC-548-491
Phase Transitions in Lead(II) Fluoride Upon Milling
Georges DÉnÉ and M. Cecilia Madamba MRS Proceedings 481 (1997) https://doi.org/10.1557/PROC-481-673
A Study of the Interface Between SnF2 Particles and Air in Stannous Fluoride Heated in Air
Georges Denes and E. Laou MRS Proceedings 357 (1994) https://doi.org/10.1557/PROC-357-109
Phase transitions and structural relationships between Ge5F12, GeF2, SnF2, and TeO2
Georges Denes Journal of Solid State Chemistry 78 (1) 52 (1989) https://doi.org/10.1016/0022-4596(89)90127-8
PbSn4F10: A new disordered fluorite-type fast ion conductor
Georges De´ne`s Journal of Solid State Chemistry 74 (2) 343 (1988) https://doi.org/10.1016/0022-4596(88)90364-7
Goldanskii-Karyagin effect in α-SnF2: A neutron diffraction and Mössbauer absorption study
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Annual Reports on NMR Spectroscopy
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Determination of the 19F shielding tensors in α-SnF2
M. Le Floch-Durand, U. Haeberlen and C. Müller Journal de Physique 43 (1) 107 (1982) https://doi.org/10.1051/jphys:01982004301010700
About SnF2 stannous fluoride. IV. Kinetics of the α → γ and β, γ → α transitions
Georges Dénès Journal of Solid State Chemistry 37 (1) 16 (1981) https://doi.org/10.1016/0022-4596(81)90003-7