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Pressure-Induced Phase Transformations (Volume II)

Pressure-Induced Phase Transformations (Volume II)

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The study of phase transitions in materials under high pressure and high temperature is a very active research field. In the last few decades, many important discoveries have been made thanks to the development of experimental techniques and computer simulation methods. Many of these achievements affect various research fields ranging from solid-state physics, chemistry, and materials science to geophysics. They not only involve deepening knowledge on solid–solid phase transitions, but also a better understanding of melting under compression. These modern discoveries, as well as the impact of pressure on structural, chemical, and physical properties, are central to the current Special Issue. Amongst other topics, it places particular emphasis on phase transitions and their effects on different physical properties.

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Keywords

  • ab initio
  • ab initio calculations
  • alpha–epsilon
  • antiferroelectric
  • band gap
  • charge density wave
  • chemical components
  • chemical substitution
  • copper halides
  • corresponding states
  • CrVO4-type structure
  • density functional theory
  • di-p-tolyl disulfide
  • DyScO3
  • elastic anomalies
  • elasticity
  • electronic properties
  • electronic transition
  • elemental solids
  • enthalpy difference components
  • equation of state
  • ferroelectric
  • FeVO4 under pressure
  • first principles
  • first principles calculations
  • first-principles
  • garnet
  • group VB transition metals
  • hardening-like effect
  • hidden polymorph
  • high pressure
  • high pressure and high temperature
  • high pressure diffraction
  • high-pressure DFT
  • high-pressure effects
  • high-pressure polymorph
  • high-pressure studies
  • HPHT diamond
  • Inclusion
  • Infrared spectroscopy
  • Iron
  • kinetic lines
  • LaAgSb2
  • LaAuSb2
  • lattice dynamics
  • luminescence
  • Mathematics & science
  • Mechanical properties
  • Metastability
  • molecular crystals
  • molecular dynamics simulations
  • niobate
  • nonequilibrium conditions
  • phase boundaries
  • phase diagram
  • phase relations
  • phase stability
  • phase transformation
  • phase transition
  • phase transitions
  • phonons
  • Physics
  • PL mapping
  • Plasticity
  • pressure
  • Raman
  • Raman modes
  • Raman scattering
  • Raman spectroscopy
  • ramp
  • rare earth orthophosphate
  • rare earth tantalates
  • Reference, information & interdisciplinary subjects
  • relative stability
  • Research & information: general
  • resistivity
  • shock wave
  • Stability
  • Structural transition
  • synchrotron radiation
  • tensile strain
  • topological analysis of bonds
  • vibrational properties
  • Wigner–Seitz radii
  • X-ray diffraction

Links

DOI: 10.3390/books978-3-0365-8565-9

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