Schottky barrier inhomogeneity of high current density AlN quasi-vertical Schottky barrier diodes on AlN/Sapphire templates

In this work, we investigate the Schottky barrier inhomogeneity of high-current–density (> 1 kA/cm 2 ) quasi-vertical AlN Schottky barrier diodes (SBDs) fabricated on AlN/Sapphire templates. The epilayers were grown using Agnitron Technology’s metal organic chemical vapor deposition system. The devices exhibited an ideality factor of 1.8, a Schottky barrier height of 1.65 eV, a specific on-resistance of 8.8 mΩ cm 2 , and a breakdown voltage of ~ 70 V. Temperature-dependent I–V measurements up to 350 °C confirmed excellent thermal stability, while also revealing inhomogeneous Schottky contact behavior. From the modified Richardson plot, a Richardson constant of 74 A cm −2 K −2 , a mean barrier height of 3.21 eV, and a standard deviation of 0.084 eV were extracted. These findings establish a foundation for the further development of quasi-vertical AlN SBDs on AlN/Sapphire templates, highlighting their promise for next-generation ultrawide-bandgap power electronics with significant potential for high-temperature and high-voltage applications.

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Publication Details

Journal
Scientific Reports
Published
2026-09-17
DOI
https://doi.org/10.1038/s41598-026-69152-8
Primary Topic
GaN-based semiconductor devices and materials
Type
article
Field-Weighted Citation Impact
0.00

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article

Schottky barrier inhomogeneity of high current density AlN quasi-vertical Schottky barrier diodes on AlN/Sapphire templates

Ziyi He, Junzhe Xie, Fikadu Alema, Houqiang Fu et al.
Scientific Reports
GaN-based semiconductor devices and materials
article

Schottky barrier inhomogeneity of high current density AlN quasi-vertical Schottky barrier diodes on AlN/Sapphire templates

Ziyi He, Junzhe Xie, Fikadu Alema, Houqiang Fu, Dinusha Herath Mudiyanselage, Will Brand, Andrei Osinsky, Bingcheng Da, Vitali Soukhoveev, Dawei Wang
article en

Abstract

In this work, we investigate the Schottky barrier inhomogeneity of high-current–density (> 1 kA/cm 2 ) quasi-vertical AlN Schottky barrier diodes (SBDs) fabricated on AlN/Sapphire templates. The epilayers were grown using Agnitron Technology’s metal organic chemical vapor deposition system. The devices exhibited an ideality factor of 1.8, a Schottky barrier height of 1.65 eV, a specific on-resistance of 8.8 mΩ cm 2 , and a breakdown voltage of ~ 70 V. Temperature-dependent I–V measurements up to 350 °C confirmed excellent thermal stability, while also revealing inhomogeneous Schottky contact behavior. From the modified Richardson plot, a Richardson constant of 74 A cm −2 K −2 , a mean barrier height of 3.21 eV, and a standard deviation of 0.084 eV were extracted. These findings establish a foundation for the further development of quasi-vertical AlN SBDs on AlN/Sapphire templates, highlighting their promise for next-generation ultrawide-bandgap power electronics with significant potential for high-temperature and high-voltage applications.

Scientific Reports
Texas State University (US), Agnitron Technology (United States) (US), Arizona State University (US)
National Science Foundation, U.S. Department of Defense, Arizona State University, Defense Advanced Research Projects Agency, Advanced Research Projects Agency, Division of Electrical, Communications and Cyber Systems
Openalex Percentile: Top 17%
GaN-based semiconductor devices and materials
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