Trivalent rare earth hydrides stabilized in thin film form demonstrate spectacular optical and electronic properties. A thin film of YH_x or LaH_x can be transformed rapidly from metal to insulator, from shiny mirror to transparent window, simply by changing the surrounding hydrogen gas pressure or an electrolytic cell potential at room temperature (RT). At low temperatures, in-situ doping is not possible in this way as hydrogen cannot diffuse. However, our finding of persistent photoconductivity under ultraviolet illumination permits tuning through the T = 0 metal–insulator transition and reveals the important role played by strong electron correlations. We discuss the optical, electronic, magnetic, and structural properties of switchable ...
In this project, I investigate the photoconductivenature of photochromic rare-earth metal oxy hydrid...
Scientists have recently discovered simultaneous photoconductivity and photochromism (i.e., optical ...
The “switchable mirror” yttrium hydride is one of the few strongly correlated systems with a continu...
Rare earth hydride films can be converted reversibly from metallic mirrors to insulating windows sim...
The rare earth hydride YH_(3−δ) can be tuned through the metal–insulator transition both by changing...
In contrast to the binary switchable mirror films (YHx, LaHx, REHx with RE:rare earth) which have a ...
Extraordinary large hysteresis effects in optical, electrical, and structural properties are observe...
Extraordinary large hysteresis effects in optical, electrical, and structural properties are observe...
The surrounding hydrogen gas pressure at room temperature was varied to convert rare earth hydride f...
Thin films of Y, La or rare earth (RE) hydrides exhibit a metal insulator transition between their d...
Thin La1-zYzHx films, in the composition range 0<z<1 and 0<x<3, are studied using x-ray diffraction,...
The optical appearance of yttrium thin film electrodes can be electrochemically switched from mirror...
Recent dramatic changes in the optical properties of LaH2+x and YH2+x films discovered by Huiberts e...
Measurements of optical reflectance, transmittance, and electrical resistivity on the switchable mir...
[EN] In 1996 surprising changes in the optical properties of Rare Earth (RE) thin films (100-200 nm)...
In this project, I investigate the photoconductivenature of photochromic rare-earth metal oxy hydrid...
Scientists have recently discovered simultaneous photoconductivity and photochromism (i.e., optical ...
The “switchable mirror” yttrium hydride is one of the few strongly correlated systems with a continu...
Rare earth hydride films can be converted reversibly from metallic mirrors to insulating windows sim...
The rare earth hydride YH_(3−δ) can be tuned through the metal–insulator transition both by changing...
In contrast to the binary switchable mirror films (YHx, LaHx, REHx with RE:rare earth) which have a ...
Extraordinary large hysteresis effects in optical, electrical, and structural properties are observe...
Extraordinary large hysteresis effects in optical, electrical, and structural properties are observe...
The surrounding hydrogen gas pressure at room temperature was varied to convert rare earth hydride f...
Thin films of Y, La or rare earth (RE) hydrides exhibit a metal insulator transition between their d...
Thin La1-zYzHx films, in the composition range 0<z<1 and 0<x<3, are studied using x-ray diffraction,...
The optical appearance of yttrium thin film electrodes can be electrochemically switched from mirror...
Recent dramatic changes in the optical properties of LaH2+x and YH2+x films discovered by Huiberts e...
Measurements of optical reflectance, transmittance, and electrical resistivity on the switchable mir...
[EN] In 1996 surprising changes in the optical properties of Rare Earth (RE) thin films (100-200 nm)...
In this project, I investigate the photoconductivenature of photochromic rare-earth metal oxy hydrid...
Scientists have recently discovered simultaneous photoconductivity and photochromism (i.e., optical ...
The “switchable mirror” yttrium hydride is one of the few strongly correlated systems with a continu...