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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 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

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

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

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

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