Role of hydrogen dynamics and deposition conditions in photochromic YHO/MoO$_3$ bilayer films

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Main Authors: Strods, Edvards, Zubkins, Martins, Vibornijs, Viktors, Moldarev, Dmitrii, Sarakovskis, Anatolijs, Kundzins, Karlis, Letko, Emija, Primetzhofer, Daniel, Purans, Juris
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Published: 2025
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author Strods, Edvards
Zubkins, Martins
Vibornijs, Viktors
Moldarev, Dmitrii
Sarakovskis, Anatolijs
Kundzins, Karlis
Letko, Emija
Primetzhofer, Daniel
Purans, Juris
author_facet Strods, Edvards
Zubkins, Martins
Vibornijs, Viktors
Moldarev, Dmitrii
Sarakovskis, Anatolijs
Kundzins, Karlis
Letko, Emija
Primetzhofer, Daniel
Purans, Juris
contents Oxygen-containing yttrium hydride (YHO) and molybdenum trioxide (MoO$_3$) bilayer films (YHO/MoO$_3$) are produced using reactive magnetron sputtering, and their photochromic properties are investigated in relation to the thickness and density of the MoO$_3$ layer. Compared to single YHO films, the YHO/MoO$_3$ films exhibit faster coloration and larger contrast, with both parameters adjustable by varying the thickness or deposition pressure of the MoO$_3$ layer. Transparent YHO/MoO$_3$ films (~75% at 550 nm) demonstrate a photochromic contrast of up to 60%, significantly higher than the 25-30% contrast observed for single YHO films after 20 hours of UVA-violet light exposure. This enhancement arises from hydrogen intercalation from the (200)-textured polycrystalline YHO film into the X-ray amorphous MoO$_3$, leading to the formation of molybdenum bronze (HxMoO$_3$), as confirmed by X-ray photoelectron and optical spectroscopies. However, the darkened YHO/MoO$_3$ films do not fully recover to their initial transparency after illumination due to the irreversible nature of the coloured MoO$_3$ layer. Most of the hydrogen intercalated into MoO$_3$ originates from the YHO layer during the initial darkening process. Furthermore, the bilayer films are chemically unstable, exhibiting gradual darkening over time even without intentional UV illumination, as confirmed by nuclear reaction analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16946
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Role of hydrogen dynamics and deposition conditions in photochromic YHO/MoO$_3$ bilayer films
Strods, Edvards
Zubkins, Martins
Vibornijs, Viktors
Moldarev, Dmitrii
Sarakovskis, Anatolijs
Kundzins, Karlis
Letko, Emija
Primetzhofer, Daniel
Purans, Juris
Materials Science
Applied Physics
Oxygen-containing yttrium hydride (YHO) and molybdenum trioxide (MoO$_3$) bilayer films (YHO/MoO$_3$) are produced using reactive magnetron sputtering, and their photochromic properties are investigated in relation to the thickness and density of the MoO$_3$ layer. Compared to single YHO films, the YHO/MoO$_3$ films exhibit faster coloration and larger contrast, with both parameters adjustable by varying the thickness or deposition pressure of the MoO$_3$ layer. Transparent YHO/MoO$_3$ films (~75% at 550 nm) demonstrate a photochromic contrast of up to 60%, significantly higher than the 25-30% contrast observed for single YHO films after 20 hours of UVA-violet light exposure. This enhancement arises from hydrogen intercalation from the (200)-textured polycrystalline YHO film into the X-ray amorphous MoO$_3$, leading to the formation of molybdenum bronze (HxMoO$_3$), as confirmed by X-ray photoelectron and optical spectroscopies. However, the darkened YHO/MoO$_3$ films do not fully recover to their initial transparency after illumination due to the irreversible nature of the coloured MoO$_3$ layer. Most of the hydrogen intercalated into MoO$_3$ originates from the YHO layer during the initial darkening process. Furthermore, the bilayer films are chemically unstable, exhibiting gradual darkening over time even without intentional UV illumination, as confirmed by nuclear reaction analysis.
title Role of hydrogen dynamics and deposition conditions in photochromic YHO/MoO$_3$ bilayer films
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2506.16946