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GaN-based light-emitting diodes on various substrates: a critical review

发光二极管 蓝宝石 光电子学 氮化镓 外延 二极管 氮化物 基质(水族馆) 固态照明 热导率 工程物理 纳米技术 材料科学 物理 光学 激光器 地质学 复合材料 海洋学 图层(电子)
作者
Guoqiang Li,Wenliang Wang,Weijia Yang,Yunhao Lin,Haiyan Wang,Zhiting Lin,Shizhong Zhou
出处
期刊:Reports on Progress in Physics [IOP Publishing]
卷期号:79 (5): 056501-056501 被引量:277
标识
DOI:10.1088/0034-4885/79/5/056501
摘要

GaN and related III-nitrides have attracted considerable attention as promising materials for application in optoelectronic devices, in particular, light-emitting diodes (LEDs). At present, sapphire is still the most popular commercial substrate for epitaxial growth of GaN-based LEDs. However, due to its relatively large lattice mismatch with GaN and low thermal conductivity, sapphire is not the most ideal substrate for GaN-based LEDs. Therefore, in order to obtain high-performance and high-power LEDs with relatively low cost, unconventional substrates, which are of low lattice mismatch with GaN, high thermal conductivity and low cost, have been tried as substitutes for sapphire. As a matter of fact, it is not easy to obtain high-quality III-nitride films on those substrates for various reasons. However, by developing a variety of techniques, distincts progress has been made during the past decade, with high-performance LEDs being successfully achieved on these unconventional substrates. This review focuses on state-of-the-art high-performance GaN-based LED materials and devices on unconventional substrates. The issues involved in the growth of GaN-based LED structures on each type of unconventional substrate are outlined, and the fundamental physics behind these issues is detailed. The corresponding solutions for III-nitride growth, defect control, and chip processing for each type of unconventional substrate are discussed in depth, together with a brief introduction to some newly developed techniques in order to realize LED structures on unconventional substrates. This is very useful for understanding the progress in this field of physics. In this review, we also speculate on the prospects for LEDs on unconventional substrates.
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