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Crystal Growth of Multifunctional Borates and Related Materials

Crystal Growth of Multifunctional Borates and Related Materials

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Borate crystals are attractive for different technological applications because of their favorable physical and chemical properties like stability and high transparency, both high thermal and non-linear optical coefficients, making them ideal active media for highly efficient solid state lasers. In this Special Issue, different aspects of multifunctional borate crystals are discussed, including ortho- and oxyorthoborates and compounds with condensed anions, as well as their nonlinear optical and laser properties and piezoelectric characteristics. For this reason, complex investigations of the phase relationships in multi-component borate melts, the study of crystal growth conditions of novel high-temperature borates, and the development of the “crystallization conditions, composition, structure, and properties” concept will provide a scientific basis for growth technologies of high performance electronic and optical devices and components with a variety of industrial, medical and many other applications. In the meantime, these relationships can help to estimate the affinity of synthetic borate materials with their natural prototypes and structural analogues.

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Keywords

  • ?-BiB3O6
  • beta barium borate
  • Bi2ZnB2O7
  • borate crystals
  • borates
  • crystal chemistry
  • Crystal growth
  • Crystal structure
  • Crystallography
  • electro-elastic properties
  • epitaxial layer growth
  • frequency conversion
  • huntite family
  • inversion twin
  • K2Al2B2O7
  • KABO
  • luminescence
  • multifunctional borate crystals
  • multifunctional materials
  • NLO crystals
  • optical activity
  • optical material
  • optical rotatory dispersion
  • order–disorder
  • piezo-electric ringing
  • planar optical waveguides
  • Pockels cell
  • rare earth spectroscopy
  • rare-earth cations
  • rare-earth scandium borate
  • second harmonic generation
  • single crystal growth
  • solid solution
  • thin film crystal growth
  • X-ray diffraction (XRD)
  • YAB
  • YAl3(BO3)4

Links

DOI: 10.3390/books978-3-03897-839-8

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