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Sensors and Materials
is an international peer-reviewed open access journal to provide a forum for researchers working in multidisciplinary fields of sensing technology.
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Sensors and Materials, Volume 15, Number 4 (2003)
Copyright(C) MYU K.K.
pp. 197-207
S&M521 Research Paper
Published: 2003

Preparation of Crack-Free AlxGa1-xN Films with High Al Composition for Schottky-Type UV Detectors [PDF]

Jae-Hoon Lee, Ki-Yeol Park, Hyun-Ick Cho, Myoung-Bok Lee, Sung-Ho Hahm, Jung-Hee Lee and Young-Ho Bae

(Received February 10, 2003; Accepted June 25, 2003)

Keywords: MOCVD, AlxGa1-xN, growth kinetics, crack-free, UV detector, Schottky diodes, leakage current

High-quality AlxGa1-xN layers with an Al composition of x=~0.4 were prepared on a GaN/sapphire substrate by a combination of controlling the growth kinetics, resulting in a slow growth rate of 5 nm/min, and introducing a stress-compensating thin AlGaN interlayer between the AlxGa1-xN and GaN layers. To control the growth kinetic activity, the reactor pressure, TMAl/TMGa flow rate, and H2/NH3 flow rate were all adjusted to obtain lessdefective and homogeneous AlxGa1-xN layers with high Al compositions, and optimized at a reactor pressure of 50 torr, TMAl/TMGa flow rate of 70/40 μmol/min, and H2/NH3 flow rate of 6/6 slpm. As a result, the sequential growth of an AlxGa1-xN layer on a 10-nm-thick AlGaN interlayer grown at 700°C on a 2.0-μm-thick GaN layer finally produced a crackfree, less defective, homogeneous Al0.33Ga0.67N film with 0.5 μm thickness. Thereafter, a typical Schottky diode of Pt/Al0.33Ga0.67N/LT-AlGaN interlayer/n+-GaN exhibited a promising electro-optical sensitivity, including a reverse leakage current of 1 nA at –5 V, UVvisible extinction ratio of ~104, and responsivity of 150 mA/W at a radiation wavelength of 280 nm.

Corresponding author: Jung-Hee Lee


Cite this article
Jae-Hoon Lee, Ki-Yeol Park, Hyun-Ick Cho, Myoung-Bok Lee, Sung-Ho Hahm, Jung-Hee Lee and Young-Ho Bae, Preparation of Crack-Free AlxGa1-xN Films with High Al Composition for Schottky-Type UV Detectors, Sens. Mater., Vol. 15, No. 4, 2003, p. 197-207.



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