The impacts of SiO2 atomic-layer-deposited passivation layer thickness on GaN-based green micro-LEDs

Author:

Deng Youcai,Chen Jinlan,Li Saijun,Huang He,Liu Zhong,Yan Zijun,Lai Shouqiang,Zheng Lijie,Yang Tianzhi,Chen Zhong,Wu TingzhuORCID

Abstract

Abstract In this study, we fabricated 76 × 127 µm2 green GaN-based micro-light-emitting-diodes (micro-LEDs) with atomic-layer-deposited (ALD) SiO2 passivation layers whose thicknesses were 0, 15, and 100 nm. The optoelectrical and communication performances of these devices were measured and analysed. The current-voltage results showed that ALD technology reduced the leakage current and enhanced the forward current of micro-LEDs. Compared with those of micro-LEDs without the passivation layer, the external quantum efficiency of micro-LEDs with 15 and 100 nm-thick SiO2 passivation layers increased by 23.64% and 19.47%, respectively. Furthermore, analysis of the EQE of the samples at room temperature using the ABC + f(n) model revealed the differences in the physical mechanisms of green micro-LEDs. Moreover, the communication performance indicated that ALD sidewall passivation reduced the carrier lifetime and improved the communication performance of green micro-LEDs.

Funder

Compound semiconductor technology Collaborative Innovation Platform project of FuXiaQuan National Independent Innovation Demonstration Zone

Fundamental Research Funds for the Central Universities

Natural Science Foundation of Fujian Province of China

Science and Technology Plan Project

National Natural Science Foundation of China

Guidance Local Science and Technology Development Fund Project

Publisher

IOP Publishing

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