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Detailed crystallographic analysis of the ice V to ice XIII hydrogen-ordering phase transition
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Calorimetric Investigation of Hydrogen-Atom Sublattice Transitions in the Ice VI/XV/XIX Trio
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Ice Polymorphs: Revealed by Neutron Diffraction under Pressure
The polymorphism of ice: five unresolved questions
Christoph G. Salzmann, Paolo G. Radaelli, Ben Slater and John L. Finney Physical Chemistry Chemical Physics 13(41) 18468 (2011) https://doi.org/10.1039/c1cp21712g
A calorimetric study on the low temperature dynamics of doped ice V and its reversible phase transition to hydrogen ordered ice XIII
Christoph G. Salzmann, Paolo G. Radaelli, John L. Finney and Erwin Mayer Physical Chemistry Chemical Physics 10(41) 6313 (2008) https://doi.org/10.1039/b808386j
Hydrogen bond ordering in ice V and the transition to ice XIII
Raman spectroscopic study of hydrogen ordered ice XIII and of its reversible phase transition to disordered ice V
Christoph G. Salzmann, Andreas Hallbrucker, John L. Finney and Erwin Mayer Physical Chemistry Chemical Physics 8(26) 3088 (2006) https://doi.org/10.1039/b604360g
A reexamination of the ice III/IX hydrogen bond ordering phase transition
(Meta-)stability domain of ice XII revealed between ≈158–212 K and ≈0.7–1.5 GPa on isobaric heating of high-density amorphous ice
Thomas Loerting, Ingrid Kohl, Christoph Salzmann, Erwin Mayer and Andreas Hallbrucker The Journal of Chemical Physics 116(8) 3171 (2002) https://doi.org/10.1063/1.1452113
Ultrasonic study of the nonequilibrium pressure-temperature diagram ofH2Oice