材料科学
发光二极管
压电
光电子学
蓝移
量子阱
拉伤
光致发光
波长
二极管
光学
复合材料
医学
激光器
物理
内科学
作者
Yin Yu,Renfeng Chen,Rui He,Yiwei Duo,Hao Long,Weiguo Hu,Junyi Zhai,Caofeng Pan,Zi‐Hui Zhang,Junxi Wang,Jinmin Li,Tongbo Wei
出处
期刊:Nano Energy
[Elsevier]
日期:2023-02-14
卷期号:109: 108283-108283
被引量:11
标识
DOI:10.1016/j.nanoen.2023.108283
摘要
Optical strain sensor for stress visualization is a significant topic in biomechanical imaging or electronic skin. In this study, the dual-wavelength InGaN/GaN multiple-quantum-wells (MQWs) micro light emitting diode (Micro-LED) is demonstrated with color response under mechanical stimulation by piezo-phototronic effect. The peak intensity of green light increases by about 37%, while the blue decreases by 10% at the external strain of 0.20%. Simultaneously, the intensity integral ratio of green and blue light changes from 43:57–53:47, leading to the display color shift from light blue to turquoise significantly. It is noted that electrical injection shows a greater color response than photoluminescence, indicating that the piezo-phototronic effect changes both the recombination in MQWs and the carrier injection. The different piezoelectric modulation between green QW and blue QW lies on the different strain-induced piezoelectric polarized charges in the interface of InGaN QWs, revealed by experiments and APSYS simulation in details. This study is of high significance for the development of optical-based stress sensor with strain visualization and high spatial resolution for smart sensing and micro-opto-electromechanical systems.
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