Vibrational spectroscopy of the mineral meyerhofferite CaB3O3(OH)5·H2O--an assessment of the molecular structure.

@article{Frost2013VibrationalSO,
  title={Vibrational spectroscopy of the mineral meyerhofferite CaB3O3(OH)5·H2O--an assessment of the molecular structure.},
  author={R. Frost and Andr{\'e}s L{\'o}pez and Y. Xi and R. Scholz and G. M. da Costa and F. Belotti and R. Lima},
  journal={Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy},
  year={2013},
  volume={114},
  pages={
          27-32
        }
}
  • R. Frost, Andrés López, +4 authors R. Lima
  • Published 2013
  • Chemistry, Medicine
  • Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy
Meyerhofferite is a calcium hydrated borate mineral with ideal formula: CaB3O3(OH)5·H2O and occurs as white complex acicular to crude crystals with length up to ~4 cm, in fibrous divergent, radiating aggregates or reticulated and is often found in sedimentary or lake-bed borate deposits. The Raman spectrum of meyerhofferite is dominated by intense sharp band at 880 cm(-1) assigned to the symmetric stretching mode of trigonal boron. Broad Raman bands at 1046, 1110, 1135 and 1201 cm(-1) are… Expand
The molecular structure of the borate mineral rhodizite (K, Cs)Al4Be4(B, Be)12O28--a vibrational spectroscopic study.
High-pressure behaviour and phase stability of Ca2B6O6(OH)10·2(H2O) (meyerhofferite)
Raman Spectra of Minerals
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