Unveiling the Thickness-Dependent Volumetric Optothermal Energy-Conversion (Self-Heating) Ability of Room Temperature-Grown GaN Thin Films on Direct Amorphous Glass Substrates
Keywords: optoelectronics, GaN thin films, room temperaturecrystallinity, amorphous (glass) substrate, rf-sputtering, FDTDsimulations, volumetric power absorption
Abstract
In this study, we demonstrate an efficient optical-to-thermal energy-conversion (self-heating) ability of room temperature (RT)-grown gallium nitride (GaN) thin films on direct amorphous glass substrates. Radio frequency (rf) magnetron sputtering was employed to experimentally achieve the RT crystallinity of these films directly on glass substrates. Finite-difference time-domain (FDTD) simulations are implemented to elucidate their optothermal response. Our experimental approach precludes the need for conventional prerequisites such as pre- or postannealing, substrate heating, or utilizing buffer (nucleation) nanolayers during the fabrication of GaN thin films on glass substrates. Notably, thin films with an excellent hexagonal wurtzite polymorphic phase comprising mainly (101), (002), and (100) planes is witnessed. Comprehensive characterizations, including structural, morphological, elemental, and surficial analyses, were performed using X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), transmission electron microscopy (TEM) with selected area electron diffraction (SAED), and atomic force microscopy (AFM), correspondingly. These analyses confirm the exceptional homogeneity, morphology, and structural integrity of the RT-grown GaN films on the glass. Furthermore, this study also examined the influence of rf-power and gas flow on the film growth rate, thickness, and overall quality. Thickness (t
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| Título según WOS: | Unveiling the Thickness-Dependent Volumetric Optothermal Energy-Conversion (Self-Heating) Ability of Room Temperature-Grown GaN Thin Films on Direct Amorphous Glass Substrates |
| Título según SCOPUS: | Unveiling the Thickness-Dependent Volumetric Optothermal Energy-Conversion (Self-Heating) Ability of Room Temperature-Grown GaN Thin Films on Direct Amorphous Glass Substrates |
| Título de la Revista: | ACS Applied Electronic Materials |
| Volumen: | 7 |
| Número: | 6 |
| Editorial: | American Chemical Society |
| Fecha de publicación: | 2025 |
| Página de inicio: | 2271 |
| Página final: | 2283 |
| Idioma: | English |
| DOI: |
10.1021/acsaelm.4c01874 |
| Notas: | ISI, SCOPUS |