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基于Ⅲ族氮化物的Micro-LED挑战及潜在解决方案

Waqar AZEEM 刘召军 伏桂月

液晶与显示2023,Vol.38Issue(7):892-909,18.
液晶与显示2023,Vol.38Issue(7):892-909,18.DOI:10.37188/CJLCD.2022-0270

基于Ⅲ族氮化物的Micro-LED挑战及潜在解决方案

Challenges and potential solutions of Ⅲ-nitride based Micro-LEDs

Waqar AZEEM 1刘召军 1伏桂月2

作者信息

  • 1. 南方科技大学 电子与电气工程系, 广东 深圳 518055||巴哈瓦尔布尔伊斯兰大学 物理研究所, 巴哈瓦尔布尔 63100, 巴基斯坦
  • 2. 南方科技大学 电子与电气工程系, 广东 深圳 518055
  • 折叠

摘要

Abstract

Micro-LED is considered as a crucial and one of the fastest growing display technologies in the world as it finds its applications in variety of products from visible light communication applications to large flat panel displays,virtual reality and wearable displays,televisions and light sources for the optogenetics and neural interface.Though the prospects are bright,Micro-LEDs still face some technological problems which needs to be addressed in order to get high volume commercialization,which include improving efficiency of LEDs with longer wavelengths,improving efficiency at low current densities,full color schemes,mass transfer,defects and yield management,repair technology and cost control.This review highlights the different challenges and their optimum solutions for Micro-LEDs.

关键词

Micro-LED/显示技术/LED效率/巨量转移/Ⅲ族氮化物

Key words

Micro-LEDs/display technologies/efficiency of LEDs/mass transfer/Ⅲ-nitride

分类

信息技术与安全科学

引用本文复制引用

Waqar AZEEM,刘召军,伏桂月..基于Ⅲ族氮化物的Micro-LED挑战及潜在解决方案[J].液晶与显示,2023,38(7):892-909,18.

基金项目

深圳市科技计划项目资助(No.KQTD20170810110313773) (No.KQTD20170810110313773)

高水平大学建设经费(No.G02236005)Supported by Shenzhen Science and Technology Program(No.KQTD20170810110313773) (No.G02236005)

High-level University Fund(No.G02236005) (No.G02236005)

液晶与显示

OA北大核心CSCDCSTPCD

1007-2780

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