English

A combinatorial guide to phase formation and surface passivation of tungsten titanium oxide prepared by thermal oxidation

Materials Science 2020-04-27 v1

Abstract

TiO2_2 and WO3_3 are two of the most important earth-abundant electronic materials with applications in countless industries. Recently alloys of WO3_3 and TiO2_2 have been investigated leading to improvements of key performance indicators for a variety of applications ranging from photo-electrochemical water splitting to electrochromic smart windows. These positive reports and the complexity of the ternary W-Ti-O phase diagram motivate a comprehensive experimental screening of this phase space. Using combinatorial thermal oxidation of solid solution W1x_{1-x}Tix_{x} precursors combined with bulk and surface analysis mapping we investigate the oxide phase formation and surface passivation of tungsten titanium oxide in the entire compositional range from pure WO3_3 to TiO2_2. The system shows a remarkable structural transition from monoclinic over cubic to tetragonal symmetry with increasing Ti concentration. In addition, a strong Ti surface enrichment is observed for precursor Ti-concentrations in excess of 55 at.%, resulting in the formation of a protective rutile-structured TiO2_2 surface layer. Despite the structural transitions, the optical properties of the oxide alloys remain largely unaltered demonstrating an independent control of multiple functional properties in W1x_{1-x}Tix_{x}On_{n}. The results from this study provide valuable guidelines for future development of W1x_{1-x}Tix_{x}On_{n} for electronic and energy applications, but also novel engineering approaches for surface functionalization and additive manufacturing of Ti-based alloys.

Keywords

Cite

@article{arxiv.1908.10067,
  title  = {A combinatorial guide to phase formation and surface passivation of tungsten titanium oxide prepared by thermal oxidation},
  author = {Sebastian Siol and Noémie Ott and Michael Stiefel and Max Döbeli and Patrik Schmutz and Lars P. H. Jeurgens and Claudia Cancellieri},
  journal= {arXiv preprint arXiv:1908.10067},
  year   = {2020}
}