English

Thermal analysis and crystal growth of doped Nb$_2$O$_5$

Materials Science 2019-02-20 v2

Abstract

The systems Nb2_2O5_5-Ta2_2O5_5 and Nb2_2O5_5-V2_2O5_5 were investigated using thermal analysis, X-ray powder diffraction and thermodynamic simulations. Solid solution formation is possible for both systems; furthermore, both contain one intermediate compound, VNb9_9O25_{25} or Ta2_2Nb4_4O15_{15}, respectively. Phase relationships for pure niobium(V)-oxide and tantalum(V)-oxide were studied under ambient pressure. It was found that both compounds can occur in two stable solid modifications. For niobium(V)-oxide this are the monoclinic high-temperature modification (H-Nb2_2O5_5) and an orthorhombic low-temperature modification (T-Nb2_2O5_5) and for tantalum(V)-oxide a tetragonal high-temperature form (α\alpha-Ta2_2O5_5) and an orthorhombic low-temperature form (β\beta-Ta2_2O5_5). Based on these results, crystal growth experiments with various compositions from both systems were carried out using the optical floating zone (OFZ) technique.

Keywords

Cite

@article{arxiv.1810.02598,
  title  = {Thermal analysis and crystal growth of doped Nb$_2$O$_5$},
  author = {Julia Hidde and Christo Guguschev and Detlef Klimm},
  journal= {arXiv preprint arXiv:1810.02598},
  year   = {2019}
}

Comments

15 pages, 10 figures, 6 tables, submitted to J. Crystal Growth