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Article cité :
J.C. Lassègues , M. Fouassier , N. Baffier , Ph. Colomban , A.J. Dianoux
J. Phys. France, 41 3 (1980) 273-280
Citations de cet article :
27 articles
Vibrational characterization of the various forms of (solvated or unsolvated) mobile proton in the solid state. Advantages, limitations and open questions
Philippe Colomban Solid State Ionics 393 116187 (2023) https://doi.org/10.1016/j.ssi.2023.116187
Proton conductors and their applications: A tentative historical overview of the early researches
Philippe Colomban Solid State Ionics 334 125 (2019) https://doi.org/10.1016/j.ssi.2019.01.032
Proton and Protonic Species: The Hidden Face of Solid State Chemistry. How to Measure H‐Content in Materials?
Ph. Colomban Fuel Cells 13 (1) 6 (2013) https://doi.org/10.1002/fuce.201200088
Aqua oxyhydroxycarbonate second phases at the surface of Ba/Sr‐based proton conducting perovskites: a source of confusion in the understanding of proton conduction
Ph. Colomban, C. Tran, O. Zaafrani and A. Slodczyk Journal of Raman Spectroscopy 44 (2) 312 (2013) https://doi.org/10.1002/jrs.4179
The structural and dynamics neutron study of proton conductors: Difficulties and improvement procedures in protonated perovskite
Ph. Colomban and A. Slodczyk The European Physical Journal Special Topics 213 (1) 171 (2012) https://doi.org/10.1140/epjst/e2012-01670-7
Optimum temperature range for the proton dynamics in H-doped BaZrO3:Yb dense ceramics—a neutron scattering study
Aneta Slodczyk, Philippe Colomban, Daniel Lamago, et al. Journal of Materials Research 27 (15) 1939 (2012) https://doi.org/10.1557/jmr.2012.180
Proton Content and Nature in Perovskite Ceramic Membranes for Medium Temperature Fuel Cells and Electrolysers
Philippe Colomban, Oumaya Zaafrani and Aneta Slodczyk Membranes 2 (3) 493 (2012) https://doi.org/10.3390/membranes2030493
Proton Dynamics and Structural Modifications in the Protonic Conductor Perovskites
Philippe Colomban, Aneta Slodczyk, Daniel Lamago, et al. Journal of the Physical Society of Japan 79 (Suppl.A) 1 (2010) https://doi.org/10.1143/JPSJS.79SA.1
Phase transitions in the H+-conducting perovskite ceramics by the quasi-elastic neutron and high-pressure Raman scattering
Aneta Slodczyk, Philippe Colomban, Daniel Lamago, et al. Ionics 14 (3) 215 (2008) https://doi.org/10.1007/s11581-007-0183-y
Diffusion in Condensed Matter
Tasso Springer and Ruep E. Lechner Diffusion in Condensed Matter 93 (2005) https://doi.org/10.1007/3-540-30970-5_3
Proton Conductivity: Materials and Applications
Klaus-Dieter Kreuer Chemistry of Materials 8 (3) 610 (1996) https://doi.org/10.1021/cm950192a
Neutron investigations of superprotonic conductors
R. E. Lechner Ferroelectrics 167 (1) 83 (1995) https://doi.org/10.1080/00150199508007723
Structures of stoichiometric and nonstoichiometric NH+4 β-alumina compounds and their thermal properties
N. Iyi, Y. Yajima and S. Kimura Journal of Solid State Chemistry 92 (2) 578 (1991) https://doi.org/10.1016/0022-4596(91)90364-N
Proton transfer and superionic conductivity in solids and gels
Ph. Colomban and A. Novak Journal of Molecular Structure 177 277 (1988) https://doi.org/10.1016/0022-2860(88)80094-2
Phase transitions and dielectric relaxations in superionic protonic conductor HUP (H3OUO2PO4.3H2O) in the broad frequency range (10-2-1010 Hz)
J.C. Badot, A. Fourrier-Lamer, N. Baffier and Ph. Colomban Journal de Physique 48 (8) 1325 (1987) https://doi.org/10.1051/jphys:019870048080132500
Electrical conductivity and thermal decomposition of β-alumina type NH+4-gallate
H. Ikawa, T. Tsurumi, K. Urabe and S. Udagawa Solid State Ionics 20 (1) 1 (1986) https://doi.org/10.1016/0167-2738(86)90027-5
Energy conversion and storage using insertion materials
G. Betz and H. Tributsch Progress in Solid State Chemistry 16 (4) 195 (1985) https://doi.org/10.1016/0079-6786(85)90005-6
Vibrational study of phase transitions and conductivity mechanism in H3OUO2PO4.3 H2O (HUP)
Ph. Colomban, M. Pham Thi and A. Novak Solid State Communications 53 (9) 747 (1985) https://doi.org/10.1016/0038-1098(85)90212-1
Vibrational study of H3OUO2PO4·3 H2O (HUP) and related compounds. Phase transitions and conductivity mechanism: Part II, H3OUO2PO4·3 H2O
M. Pham-Thi, Ph. Colomban and A. Novak Journal of Physics and Chemistry of Solids 46 (5) 565 (1985) https://doi.org/10.1016/0022-3697(85)90219-7
Proton conductivity of H3OUO2AsO4.3H2O (HUAs) under pressure indication for transition from vehicle mechanism to grotthuss mechanism
K.D Kreuer, I Stoll and A Rabenau Solid State Ionics 9-10 1061 (1983) https://doi.org/10.1016/0167-2738(83)90131-5
Neutron scattering in Ag+ and Na+ β-aluminas
J.R. Gavarri, G. Lucazeau, A.J. Dianoux and Ph. Colomban Solid State Communications 45 (2) 203 (1983) https://doi.org/10.1016/0038-1098(83)90377-0
Hydrogenated β-alumina-like thin films
J.P Schnell, G Velasco, D Dubreuil, et al. Solid State Ionics 9-10 1465 (1983) https://doi.org/10.1016/0167-2738(83)90196-0
Proton conductivity in the layer compound H3OUO2AsO4�3H2O (HU As)
K. D. Kreuer, A. Rabenau and R. Messer Applied Physics A Solids and Surfaces 32 (2) 45 (1983) https://doi.org/10.1007/BF00617828
Ammonium beta alumina
BC Tofield, JM Newsam and A Hooper Solid State Ionics 5 249 (1981) https://doi.org/10.1016/0167-2738(81)90240-X
Vibrational study of hydrogen beta alumina
Ph Colomban Journal of Physics C: Solid State Physics 14 (29) 4325 (1981) https://doi.org/10.1088/0022-3719/14/29/020
Protonic species, conductivity, and vibrational spectra of β/β″ alumina
Philippe Colomban and Alexandre Novak Solid State Ionics 5 241 (1981) https://doi.org/10.1016/0167-2738(81)90238-1
Ceramiques d'alumine β et de ferrite β pour sonde a protons
P Lenfant, D Plas, M Ruffo, Ph Colomban and J.P Boilot Materials Research Bulletin 15 (12) 1817 (1980) https://doi.org/10.1016/0025-5408(80)90202-0