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Original Articles

On the coexistence of cubic and hexagonal ice between 160 and 240 K

Pages 375-383 | Received 15 Jan 1998, Accepted 02 Mar 1998, Published online: 20 Aug 2009

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Mohammad Reza Ghaani, Mario Bernardi & Niall J. English. (2021) Crystallisation competition between cubic and hexagonal ice structures: molecular-dynamics insight. Molecular Simulation 47:1, pages 18-26.
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Articles from other publishers (51)

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Jihong Shi, Maxwell Fulford, Hui Li, Mariam Marzook, Maryam Reisjalali, Matteo Salvalaglio & Carla Molteni. (2022) Investigating the quasi-liquid layer on ice surfaces: a comparison of order parameters. Physical Chemistry Chemical Physics 24:20, pages 12476-12487.
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Dhanadeep Dutta, A. K. Bera, Priya Maheshwari, Siddhartha Kolay, S. M. Yusuf & P. K. Pujari. (2022) High cubicity of D 2 O ice inside spherical nanopores of MIL-101(Cr) framework: a neutron diffraction study . Physical Chemistry Chemical Physics 24:19, pages 11872-11881.
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Marjorie Ladd-Parada, Katrin Amann-Winkel, Kyung Hwan Kim, Alexander Späh, Fivos Perakis, Harshad Pathak, Cheolhee Yang, Daniel Mariedahl, Tobias Eklund, Thomas J. Lane, Seonju You, Sangmin Jeong, Matthew Weston, Jae Hyuk Lee, Intae Eom, Minseok Kim, Jaeku Park, Sae Hwan Chun & Anders Nilsson. (2022) Following the Crystallization of Amorphous Ice after Ultrafast Laser Heating. The Journal of Physical Chemistry B 126:11, pages 2299-2307.
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Shu-hui Guan, Cheng Shang, Si-Da Huang & Zhi-Pan Liu. (2018) Two-Stage Solid-Phase Transition of Cubic Ice to Hexagonal Ice: Structural Origin and Kinetics. The Journal of Physical Chemistry C 122:50, pages 29009-29016.
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Laura Lupi, Arpa Hudait, Baron Peters, Michael Grünwald, Ryan Gotchy Mullen, Andrew H. Nguyen & Valeria Molinero. (2017) Role of stacking disorder in ice nucleation. Nature 551:7679, pages 218-222.
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Michael Ambler, Bart Vorselaars, Michael P. Allen & David Quigley. (2017) Solid–liquid interfacial free energy of ice Ih, ice Ic, and ice 0 within a mono-atomic model of water via the capillary wave method. The Journal of Chemical Physics 146:7.
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Stephen A. Zielke, Allan K. Bertram & G. N. Patey. (2015) Simulations of Ice Nucleation by Kaolinite (001) with Rigid and Flexible Surfaces. The Journal of Physical Chemistry B 120:8, pages 1726-1734.
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G. P. Johari & Ove Andersson. (2015) Effects of stacking disorder on thermal conductivity of cubic ice. The Journal of Chemical Physics 143:5.
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Stephen A. Zielke, Allan K. Bertram & Grenfell N. Patey. (2014) A Molecular Mechanism of Ice Nucleation on Model AgI Surfaces. The Journal of Physical Chemistry B 119:29, pages 9049-9055.
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Tamsin L. Malkin, Benjamin J. Murray, Christoph G. Salzmann, Valeria Molinero, Steven J. Pickering & Thomas F. Whale. (2015) Stacking disorder in ice I. Physical Chemistry Chemical Physics 17:1, pages 60-76.
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S Townrow & P G Coleman. (2014) Structure and sublimation of water ice films grown in vacuo at 120?190 K studied by positron and positronium annihilation. Journal of Physics: Condensed Matter 26:12, pages 125402.
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Saehyun Choi, Eunseon Jang & Jun Soo Kim. (2014) In-layer stacking competition during ice growth. The Journal of Chemical Physics 140:1.
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J. Y. Yan & G. N. Patey. (2013) Ice nucleation by electric surface fields of varying range and geometry. The Journal of Chemical Physics 139:14.
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Konrad Thürmer & Shu Nie. (2013) Formation of hexagonal and cubic ice during low-temperature growth. Proceedings of the National Academy of Sciences 110:29, pages 11757-11762.
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Werner F. Kuhs, Christian Sippel, Andrzej Falenty & Thomas C. Hansen. (2012) Extent and relevance of stacking disorder in “ice I c ” . Proceedings of the National Academy of Sciences 109:52, pages 21259-21264.
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V. B. Efimov, A. N. Izotov, A. A. Levchenko, L. P. Mezhov-Deglin & S. S. Khasanov. (2011) Structural transitions in ice samples at low temperatures and pressures. JETP Letters 94:8, pages 621-625.
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D. Champion, C. Loupiac, D. Russo, D. Simatos & J. M. Zanotti. (2010) Dynamic and sub-ambient thermal transition relationships in water?sucrose solutions. Journal of Thermal Analysis and Calorimetry 104:1, pages 365-374.
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G. T. Rengarajan, D. Enke, M. Steinhart & M. Beiner. (2011) Size-dependent growth of polymorphs in nanopores and Ostwald's step rule of stages. Physical Chemistry Chemical Physics 13:48, pages 21367.
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Emily B. Moore & Valeria Molinero. (2011) Is it cubic? Ice crystallization from deeply supercooled water. Physical Chemistry Chemical Physics 13:44, pages 20008.
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G.P. Johari. (2009) Thermal relaxation of water due to interfacial processes and phase equilibria in 1.8nm pores of MCM-41. Thermochimica Acta 492:1-2, pages 29-36.
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Lloyd W. Zilch, Joshua T. Maze, John W. Smith & Martin F. Jarrold. (2009) Freezing, fragmentation, and charge separation in sonic sprayed water droplets. International Journal of Mass Spectrometry 283:1-3, pages 191-199.
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Kunimitsu Morishige, Hiroaki Yasunaga & Hiroaki Uematsu. (2009) Stability of Cubic Ice in Mesopores. The Journal of Physical Chemistry C 113:8, pages 3056-3061.
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Holger Somnitz. (2009) Quantum chemical studies of the adsorption of single acetone molecules on hexagonal ice I h and cubic ice I c . Phys. Chem. Chem. Phys. 11:7, pages 1033-1042.
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V. Lazic, I. Rauschenbach, S. Jovicevic, E.K. Jessberger, R. Fantoni & M. Di Fino. (2007) Laser induced breakdown spectroscopy of soils, rocks and ice at subzero temperatures in simulated martian conditions. Spectrochimica Acta Part B: Atomic Spectroscopy 62:12, pages 1546-1556.
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Marcelo A. Carignano. (2006) Formation of Stacking Faults during Ice Growth on Hexagonal and Cubic Substrates. The Journal of Physical Chemistry C 111:2, pages 501-504.
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J. E. Shilling, M. A. Tolbert, O. B. Toon, E. J. Jensen, B. J. Murray & A. K. Bertram. (2006) Measurements of the vapor pressure of cubic ice and their implications for atmospheric ice clouds. Geophysical Research Letters 33:17.
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Benjamin J. Murray & Allan K. Bertram. (2006) Formation and stability of cubic ice in water droplets. Phys. Chem. Chem. Phys. 8:1, pages 186-192.
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Vitaly I. Khvorostyanov & Judith A. Curry. (2004) Thermodynamic Theory of Freezing and Melting of Water and Aqueous Solutions. The Journal of Physical Chemistry A 108:50, pages 11073-11085.
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G. Tzvetkov, M.G. Ramsey & F.P. Netzer. (2004) Interaction of glycine with ice nanolayers. Chemical Physics Letters 397:4-6, pages 392-396.
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Ove Andersson & G. P. Johari. (2004) Spontaneous transformation of water’s high-density amorph and a two-stage crystallization to ice VI at 1 GPa: A dielectric study. The Journal of Chemical Physics 120:24, pages 11662-11671.
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G. P. Johari & Ove Andersson. (2004) Water’s polyamorphic transitions and amorphization of ice under pressure. The Journal of Chemical Physics 120:13, pages 6207-6213.
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D. M. Murphy. (2003) Dehydration in cold clouds is enhanced by a transition from cubic to hexagonal ice. Geophysical Research Letters 30:23.
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G. P. Johari. (2003) Stability of ice XII relative to ice V and ice VI at high pressures. The Journal of Chemical Physics 118:1, pages 242-248.
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Raul A. Baragiola. 2003. Water in Confining Geometries. Water in Confining Geometries 359 395 .
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S. Mitlin & K.T. Leung. (2002) Surface chemistry of OH dangling bonds in vapour-deposited ice films at 128?185 K: hydrogen-bonding interactions with acetone. Surface Science 505, pages L227-L236.
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László Gránásy & David W. Oxtoby. (2000) Cahn–Hilliard theory with triple-parabolic free energy. II. Nucleation and growth in the presence of a metastable crystalline phase. The Journal of Chemical Physics 112:5, pages 2410-2419.
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P.W. Wilson, J.W. Arthur & A.D.J. Haymet. (1999) Ice Premelting during Differential Scanning Calorimetry. Biophysical Journal 77:5, pages 2850-2855.
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G. P. Johari. (1998) An interpretation for the thermodynamic features of ice Ih↔ice XI transformation. The Journal of Chemical Physics 109:21, pages 9543-9548.
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