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Implementing κ-Ga2O3 Polymorphs Using Ga Predeposition
DOI:10.1021/acs.cgd.4c01259.png)
摘要
En 中文
Single kappa-phase gallium oxide (kappa-Ga2O3) has limited growth at low temperatures due to lattice constant mismatch with sapphire substrates. This study reports that gallium (Ga) predeposition effectively mitigates this mismatch, enabling the growth of kappa-Ga2O3 epilayers at low temperatures rather than the more common alpha-Ga2O3 epilayers. High-resolution X-ray diffraction demonstrated that the Ga2O3 phase can be grown as pure alpha and kappa-phases without the formation of mixed phases by controlling the gallium monochloride (GaCl) flow rate. Single kappa-phase and mixed phases Ga2O3 samples for the structural and optical properties were analyzed. Furthermore, a deep ultraviolet photodetector device with a metal-semiconductor-metal structure was fabricated using kappa-Ga2O3 thin films and lattice mismatch relaxation Ga predeposition layers grown at low temperatures. The device exhibited a sharp response with a maximum responsivity at 260 nm, indicating the potential of the grown kappa-Ga2O3 as a highly selective ultraviolet C-band detector.
Keyword:
HETEROEPITAXIAL GROWTH
TEMPERATURE
PHASES
ALPHA
BETA
期刊
C
IF:
3.4
论文数:
1.6W
被引数:
3.5W
机构
引用论文
Thermodynamically metastable α-, ε- (or κ-), and γ-Ga2O3: From material growth to device applications
APL MATERIALS
IF4.5
A High-Performance ε-Ga2O3-Based Deep-Ultraviolet Photodetector Array for Solar-Blind Imaging用于日盲成像的高性能 ε-ga2o3基深紫外光电探测器阵列
MATERIALS
IF3.2

