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Self-Powered ZnSnN2/GaN Photodiodes via Fine Stoichiometry Control and Photon Trapping Micropatterned Heterojunctions Under Low-Light Irradiation

delete2026-08-01
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OA
AI
J
Jeong Hyeon Kim
J
J. Hwang
S
Soon Joo Yoon
Y
Yoon Kyueng Lee
T
Taehun Lee
J
Jung‐Wook Min
J
Jongmin Kim
K
Kwangwook Park *
H
Han Eol Lee *
DOI:10.1002/sstr.70572delete
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Abstract

Abstract

En 中文
Recent advances in energy-autonomous optoelectronic devices have attracted significant attention for next-generation applications. However, developing compound semiconductor-based self-powered photodiodes remains challenging due to difficulties in precise band alignment control and limited light absorption efficiency. Here, we demonstrate a self-powered photodiode based on a ZnSnN2 (ZTN)/GaN heterostructure, featuring an enhanced built-in electric field via fine stoichiometry control and light-trapping micropatterned heterojunctions. Through stoichiometric engineering, the ZTN thin-film exhibited an optimized carrier concentration of 3.34 × 1019 cm−3 and a bandgap of 2.27 eV. Consequently, the heterostructure achieved a strong built-in electric field of 88 kV cm−1 due to the degenerate n-type properties of ZTN. To further reinforce light absorption, we introduced periodic microhole patterns, and the resulting micropatterned heterojunction exhibited a substantial carrier lifetime of 6.2 ns, representing a 1.8-fold enhancement over the thin-film structure. Finally, the device demonstrated robust power-saving operation under zero-bias conditions, successfully driving a commercial temperature/humidity sensor. Moreover, the device exhibited a linear dynamic range of 15.1 dB and stable linearity (θ ≈ 0.27) even under low-light conditions, ensuring reliable operation in varying illumination environments. These results suggest that our dual approach of stoichiometric and structural engineering offers a scalable pathway for next-generation self-powered optoelectronic systems.
Keywords:
low-light irradiation
micropatterned heterojunction
self-powered photodiode
stoichiometry control
ZnSnN2
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Journal

Small Structures cover
Small Structures
IF:
11.3
Papers:
1.5K
Citations:
6.8K

Organization

K
Korea Advanced Nano Fab Center
Scholars:
14
Papers: 8
Citations: 262
J
jeonbuk national university
Scholars:
1.7K
Papers: 767
Citations: 0
M
myongji university
Scholars:
404
Papers: 192
Citations: 7
G
gwangju institute of science and technology
Scholars:
740
Papers: 315
Citations: 1
D
daegu gyeongbuk institute of science and technology
Scholars:
303
Papers: 123
Citations: 1
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