Correlating ultrafast calorimetry, viscosity, and structural measurements in liquid GeTe and Ge15Te85
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Jiri Orava | A. L. Greer | I. Kaban | J. Orava | A. Lindsay Greer | Hans Weber | Ivan Kaban | Julian Pries | H. Weber | J. Pries
[1] I. Kaban,et al. Thermodynamic and Structural Investigations of Heat-Treated Amorphous Ge—Te Alloys. , 2004 .
[2] W. Hoyer,et al. A statistical approach to estimate the experimental uncertainty of viscosity data obtained by the oscillating cup technique , 2009 .
[3] M. Johnson,et al. A structural signature of liquid fragility , 2014, Nature Communications.
[4] W. J. Wang,et al. Breaking the Speed Limits of Phase-Change Memory , 2012, Science.
[5] C. Angell,et al. Formation of Glasses from Liquids and Biopolymers , 1995, Science.
[6] I. Kaban,et al. Structural studies on Te-rich Ge–Te melts , 2006 .
[7] Y. Tsuchiya. The Anomalous Negative Thermal Expansion and the Compressibility Maximum of Molten Ge-Te Alloys , 1991 .
[8] K F Kelton,et al. Kinetic and structural fragility—a correlation between structures and dynamics in metallic liquids and glasses , 2017, Journal of physics. Condensed matter : an Institute of Physics journal.
[9] J. Gaspard,et al. Computer simulation of liquid semiconductors , 2002 .
[10] C. Angell,et al. Phase change alloy viscosities down to T g using Adam-Gibbs-equation fittings to excess entropy data: A fragile-to-strong transition , 2015 .
[11] P. Boolchand,et al. Structural singularities in Ge(x)Te(100-x) films. , 2015, The Journal of chemical physics.
[12] I. Kaban,et al. Experimental and ab initio molecular dynamics study of the structure and physical properties of liquid GeTe , 2017 .
[13] Wei Zhang,et al. Reducing the stochasticity of crystal nucleation to enable subnanosecond memory writing , 2017, Science.
[14] Ralf Busch,et al. Structural evolution on medium-range-order during the fragile-strong transition in Ge15Te85 , 2017 .
[15] W. Hoyer,et al. Temperature dependence of the structure of liquid eutectic GeTe alloys , 1987 .
[16] Y. Tsuchiya. Thermodynamics of the structural changes in the liquid Ge-Te system around the Te-rich eutectic composition , 2002 .
[17] Daniel W. Hewak,et al. Fragile‐to‐Strong Crossover in Supercooled Liquid Ag‐In‐Sb‐Te Studied by Ultrafast Calorimetry , 2015 .
[18] M. Libera,et al. Microstructural measurements of amorphous GeTe crystallization by hot‐stage optical microscopy , 1995 .
[19] Matthias Wuttig,et al. Measurement of crystal growth velocity in a melt-quenched phase-change material , 2013, Nature Communications.
[20] Marco Bernasconi,et al. Breakdown of Stokes–Einstein relation in the supercooled liquid state of phase change materials , 2012, 1207.7269.
[21] Xiang Shen,et al. Unraveling the Crystallization Kinetics of Supercooled Liquid GeTe by Ultrafast Calorimetry , 2017 .
[22] M. Kund,et al. Nanosecond switching in GeTe phase change memory cells , 2009 .
[23] I. Kaban,et al. Viscosity of liquid Ag-In-Sb-Te: Evidence of a fragile-to-strong crossover. , 2016, The Journal of chemical physics.
[24] Lian Yu,et al. Crystal growth kinetics exhibit a fragility-dependent decoupling from viscosity. , 2008, The Journal of chemical physics.
[25] Bart J. Kooi,et al. Crystallization Kinetics of GeSbTe Phase-Change Nanoparticles Resolved by Ultrafast Calorimetry , 2017, The journal of physical chemistry. C, Nanomaterials and interfaces.
[26] Guo-Fu Zhou,et al. Materials aspects in phase change optical recording , 2001 .
[27] John C. Mauro,et al. Viscosity of glass-forming liquids , 2009, Proceedings of the National Academy of Sciences.
[28] J. Mauro,et al. Fragile-to-strong transition in metallic glass-forming liquids. , 2010, The Journal of chemical physics.
[29] A. L. Greer,et al. Kissinger method applied to the crystallization of glass-forming liquids: Regimes revealed by ultra-fast-heating calorimetry , 2015 .
[30] Y. Kameda,et al. Time-of-Flight Neutron Diffraction Study of Amorphous and Liquid Ge–Te Alloys , 1996 .
[31] H. Saitoh,et al. Semiconductor-Metal Transition Induced by the Structural Transition in Liquid Ge 15 Te 85 , 1993 .
[32] Carl V. Thompson,et al. On the approximation of the free energy change on crystallization , 1979 .
[33] Y. Tsuchiya,et al. Thermodynamics of Structural Changes in Liquid Ge–Te Alloys Around the Eutectic Composition: Specific Heat Measurements and Thermodynamic Stability , 2005 .
[34] Bart J. Kooi,et al. Resolving Crystallization Kinetics of GeTe Phase-Change Nanoparticles by Ultrafast Calorimetry , 2017, Crystal growth & design.
[35] A. L. Greer,et al. Fast and slow crystal growth kinetics in glass-forming melts. , 2014, The Journal of chemical physics.
[36] I. Kaban,et al. Temperature-dependent structural changes in liquid Ge15Te85 , 2007 .
[37] T. Topuria,et al. Irreversible reactions studied with nanosecond transmission electron microscopy movies: Laser crystallization of phase change materials , 2013 .
[38] Jiri Orava,et al. Classical-nucleation-theory analysis of priming in chalcogenide phase-change memory , 2017 .
[39] I. Kaban,et al. Local atomic environment in amorphous Ge15Te85 , 2005 .
[40] Behrad Gholipour,et al. Characterization of supercooled liquid Ge2Sb2Te5 and its crystallization by ultrafast-heating calorimetry. , 2012, Nature materials.
[41] I. Kaban,et al. ‘Wrong bonds’ in sputtered amorphous Ge2Sb2Te5 , 2007, Journal of Physics: Condensed Matter.
[42] I. Kaban,et al. Determination of partial pair distribution functions in amorphous Ge15Te85 by simultaneous RMC simulation of diffraction and EXAFS data , 2007 .
[43] J. Gaspard,et al. Experimental investigation of the waterlike density anomaly in the liquid Ge 15 Te 85 eutectic alloy , 2003 .
[44] W. Hoyer,et al. The short range order of liquid eutectic AIII-Te and AIV-Te alloys , 1996 .
[45] A. Yavari,et al. Probing the structure of a liquid metal during vitrification , 2015 .
[46] M. Chen,et al. Compound materials for reversible, phase‐change optical data storage , 1986 .
[47] Jörg Behler,et al. Fast Crystallization of the Phase Change Compound GeTe by Large-Scale Molecular Dynamics Simulations. , 2013, The journal of physical chemistry letters.
[48] M. Wuttig,et al. Phase-change materials for rewriteable data storage. , 2007, Nature materials.
[49] M. Wuttig,et al. Atomic force microscopy measurements of crystal nucleation and growth rates in thin films of amorphous Te alloys , 2004 .