Material Science
Density
100%
Ab Initio Calculation
39%
Oxide Compound
30%
Zirconia
22%
Nitride Compound
22%
Tantalum
22%
Carbide
22%
Refractory Material
22%
Calorimetry
18%
Synchrotron X-Ray Diffraction
18%
Solid Solution
17%
Materials Property
17%
Thermal Expansion
16%
Materials Design
14%
High Pressure Synthesis
14%
Lattice Constant
13%
Zirconium
11%
Cathode
11%
Metal Oxide
11%
Thermodynamics Modeling
11%
Electronic Structure Calculation
11%
Thermal Property
11%
Hafnium
11%
Titanium
11%
Boride
11%
Sodium
11%
Rhenium
11%
Yttrium
11%
Short-Range Order
11%
Thermal Cycling
11%
All-Solid-State Batteries
11%
Crystal Structure
11%
Thorium
11%
Carbon Dioxide
11%
Oxidation Reaction
9%
Lattice Vibration
8%
Physical Property
7%
Thermal Stability
5%
Thin Films
5%
Thermal Analysis
5%
Ferroelectric Material
5%
Shape Memory Effect
5%
Elastic Constant
5%
Crystalline Material
5%
Anisotropy
5%
Point Defect
5%
High Entropy Alloys
5%
Mechanical Stability
5%
Surface Energy
5%
Zirconates
5%
Keyphrases
High Temperature
25%
United States
22%
Free Energy
17%
Mechanical Instability
15%
COVID-19 Severity
15%
Probabilistic Forecasting
15%
COVID-19 Mortality
15%
Oxides
14%
Refractory Properties
14%
Monoxide
11%
Thermodynamics
11%
Metal Oxide
11%
Heat of Fusion
11%
Borides
11%
Experimental Temperature
11%
Higher Order Thermodynamics
11%
Cubic HfO2
11%
Sodium Chloride
11%
Cubic ZrO2
11%
Li6PS5Cl
11%
Solid-liquid Coexistence
11%
Tiling Method
11%
Limit Calculation
11%
Cu-ZrO2 Interfaces
11%
First-principles Kinetic Monte Carlo
11%
Cu-ZrO2
11%
Epicycle
11%
Carbides
11%
Synchrotron X-ray Diffraction
11%
Elasticity Limit
11%
Nitrides
11%
Formation Free Energy
11%
Re-entrant Melting
11%
La2Zr2O7
11%
Yttrium
11%
High-pressure Synthesis
11%
NMC532
8%
Rock-salt Structure
8%
Ab Initio Computations
7%
Interfacial Free Energy
7%
Modeling Team
7%
COVID-19 Pandemic
7%
Solid Oxygen
6%
Condensed Phase
6%
Thermal Stability
5%
Experimental Determination
5%
Ab Initio Thermodynamics
5%
Solid Structure
5%
Density Functional Theory
5%
Ab Initio Calculations
5%
Engineering
Melting Temperature
56%
Energy Engineering
53%
Deep Learning
22%
Network Model
22%
Lattice Constant
18%
Melting Point
15%
Millisecond
14%
Nitride
11%
Local Minimum
11%
Metrics
11%
Temperature Drop
11%
Mols
11%
Sublattice
11%
Learning Technique
11%
Refractory High Entropy Alloy
11%
Heat Capacity
11%
Ray Diffraction
11%
Alloy Element
11%
Equation of State
11%
Temperature Heat
11%
Computer Simulation
9%
Constrains
8%
High Melting Point
6%
Configuration Space
6%
Relative Cost
6%
Stable Phase
6%
Enthalpy Value
5%
Figure of Merit
5%
Illustrates
5%
Optimisation Problem
5%
Limitations
5%
Critical Point
5%
Computational Technique
5%
Experimental Technique
5%
Orientation Dependence
5%