Kinetic stability and heat capacity of vapor-deposited glasses of o-terphenyl.
Explore this paper's citation graph
Summary
Vapor- Deposited o-terphenyl glasses exhibit greater kinetic stability than vapor-deposited glasses of indomethacin, in qualitative agreement with recent surface diffusion measurements indicating faster surface diffusion on o-terspineyl glasses.
- Type
- article
- Published
- 2015-08-31
- Cited by
- 47
- References
- 60
- OpenAlex
- https://openalex.org/W1929317169
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24454935
Keywords
Supercooling, Terphenyl, Heat capacity, Glass transition, Materials science
References
- Anharmonicity in a fragile glass-former probed by inelastic neutron scattering.
- On the Temperature Dependence of Cooperative Relaxation Properties in Glass‐Forming Liquids
- Heat capacities of selenium crystal (trigonal), glass, and liquid from 5 to 360 K
- Model vapor-deposited glasses: growth front and composition effects.
- On the dielectric susceptibility spectra of supercooled o-terphenyl.
- Organic Glasses with Exceptional Thermodynamic and Kinetic Stability
- Viscous liquids and the glass transition. V. Sources of the excess specific heat of the liquid
- Construction of an adiabatic calorimeter for a vapor-deposited sample and thermal characterization of amorphous butyronitrile
- Influence of substrate temperature on the stability of glasses prepared by vapor deposition.
- Thermodynamic study of 1-butene. Exothermic and endothermic enthalpy relaxations near the glass transition☆
- Thermal Conductivity and Specific Heat of Noncrystalline Solids
- Stable glasses of indomethacin and α,α,β-tris-naphthylbenzene transform into ordinary supercooled liquids.
- Vapor-deposited α,α,β-tris-naphthylbenzene glasses with low heat capacity and high kinetic stability.
- Low-Temperature Heat-Capacity Differences between Glasses and Their Crystals
- Glass Transition in o‐Terphenyl
- Diffusion-controlled and diffusionless crystal growth in liquid o-terphenyl near its glass transition temperature.
- ENUMERATION OF ISOBARIC INHERENT STRUCTURES FOR THE FRAGILE GLASS FORMER O-TERPHENYL
- Thermodynamic aspects of glassy states
- Highly stable glasses of celecoxib: Influence on thermo-kinetic properties, microstructure and response towards crystal growth
- How much time is needed to form a kinetically stable glass? AC calorimetric study of vapor-deposited glasses of ethylcyclohexane.
Cited by
- Perspective: Highly stable vapor-deposited glasses.
- Vapor-deposited glasses of methyl-m-toluate: How uniform is stable glass transformation?
- Surface mobility of molecular glasses and its importance in physical stability.
- Hydrogen Bonding Slows Down Surface Diffusion of Molecular Glasses.
- Glass transition and stable glass formation of tetrachloromethane.
- Surface diffusion and surface crystal growth of tris-naphthyl benzene glasses
- Vapor-deposited alcohol glasses reveal a wide range of kinetic stability.
- Tensile Fracture of Molecular Glasses Studied by Differential Scanning Calorimetry: Reduction of Heat Capacity by Lateral Constraint.
- Nematic-like stable glasses without equilibrium liquid crystal phases.
- Influence of Hydrogen Bonding on the Kinetic Stability of Vapor-Deposited Glasses of Triazine Derivatives.
- Limited surface mobility inhibits stable glass formation for 2-ethyl-1-hexanol.
- Using deposition rate to increase the thermal and kinetic stability of vapor-deposited hole transport layer glasses via a simple sublimation apparatus.
- Relating Ultrastable Glass Formation to Enhanced Surface Diffusion via the Johari-Goldstein β-Relaxation in Molecular Glasses.
- Influence of Hydrogen Bonding on the Surface Diffusion of Molecular Glasses: Comparison of Three Triazines.
- Why is surface diffusion the same in ultrastable, ordinary, aged, and ultrathin molecular glasses?
- Glasses of three alkyl phosphates show a range of kinetic stabilities when prepared by physical vapor deposition.
- THERMAL PROPERTIES OF TPD-BASED ORGANIC GLASSES
- Effect of molecular size and hydrogen bonding on three surface-facilitated processes in molecular glasses: Surface diffusion, surface crystal growth, and formation of stable glasses by vapor deposition.
- Exploring the Importance of Surface Diffusion in Stability of Vapor-Deposited Organic Glasses.
- Understanding Glass through Differential Scanning Calorimetry.
Related papers
- Anomalous dependence of the heat capacity of supercooled water on pressure and temperature
- A new threshold of uncovering the nature of glass transition: The slow ß relaxation in glassy states
- A new threshold of uncovering the nature of glass transition:The slow β relaxation in glassy states
- Impact of fragility on enthalpy relaxation in glass.
- On the ergodicity of supercooled molecular glass-forming liquids at the dynamical arrest: the o-terphenyl case
- Nonmonotonic temperature dependence of heat capacity through the glass transition within a kinetic model.
- A model for the analysis of the heat release from a supercooled liquid at the glass transition
- Isothermal enthalpy relaxation of amorphous polystyrene studied using Temperature-Modulated Fast Scanning Calorimetry
- Correlation between thermodynamic and kinetic fragilities in nonpolymeric glass-forming liquids.
- Adam-Gibbs model for the supercooled dynamics in the ortho-terphenyl ortho-phenylphenol mixture.