Aliovalent Calcium Doping of Yttrium Oxyhydride Thin Films and Implications for Photochromism

To develop an understanding of the photochromic effect in rare-earth metal oxyhydride thin films (REH3–2x O x , here RE = Y), we explore the aliovalent doping of the RE cation. We prepared Ca-doped yttrium oxyhydride thin films ((Ca z Y1–z )­H x O y ) by reactive magnetron cosputtering with Ca dopin...

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Veröffentlicht in:Journal of physical chemistry. C 2022-09, Vol.126 (34), p.14742-14749
Hauptverfasser: Chaykina, Diana, Usman, Ismene, Colombi, Giorgio, Schreuders, Herman, Tyburska-Pueschel, Beata, Wu, Ziying, Eijt, Stephan W. H., Bannenberg, Lars J., de Wijs, Gilles A., Dam, Bernard
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Sprache:eng
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Zusammenfassung:To develop an understanding of the photochromic effect in rare-earth metal oxyhydride thin films (REH3–2x O x , here RE = Y), we explore the aliovalent doping of the RE cation. We prepared Ca-doped yttrium oxyhydride thin films ((Ca z Y1–z )­H x O y ) by reactive magnetron cosputtering with Ca doping concentrations between 0 and 36 at. %. All of the films are semiconductors with a constant optical band gap for Ca content below 15%, while the band gap expands for compositions above 15%. Ca doping affects the photochromic properties, resulting in (1) a lower photochromic contrast, likely due to a lower H– concentration, and (2) a faster bleaching speed, caused by a higher pre-exponential factor. Overall, these results point to the importance of the H– concentration for the formation of a “darkened” phase and the local rearrangement of these H– for the kinetics of the process.
ISSN:1932-7447
1932-7455
DOI:10.1021/acs.jpcc.2c04456