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掺镓氧化锌微米线的波长可调紫外电致发光

Wavelength-Tunable Ultraviolet Electroluminescence from Ga-Doped ZnO Microwires.

机构信息

State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences , No. 3888 Dongnanhu Road, Changchun 130033, China.

University of the Chinese Academy of Sciences , Beijing 100049, China.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 22;9(46):40743-40751. doi: 10.1021/acsami.7b14084. Epub 2017 Nov 9.

Abstract

The usage of ZnO as active layers to fabricate hybrid heterojunction light-emitting diodes is expected to be an effective approach for ultraviolet light sources. Individual ZnO microwires with controlled gallium (Ga) incorporation (ZnO/Ga MWs) have been fabricated via a chemical vapor deposition method. It is found that with the increasing Ga-incorporated concentration, the near-band-edge (NBE) photoluminescence of the ZnO MWs blue-shifted gradually from 390 to 370 nm. Heterojunction diodes comprising single ZnO/Ga MWs and p-GaN have been fabricated. With increasing injection currents, the interfacial emissions can be suppressed effectively and the typical NBE emission dominates the electroluminescence (EL). In particular, with increasing Ga-doping concentration, the dominant EL emission wavelengths of the ZnO/Ga MW-based heterojunction diodes blue-shifted from 384 to 372 nm, and the blue shift can be ascribed to the Burstein-Moss effect induced by the Ga incorporation. The present work demonstrates the feasibility of optical band gap engineering of ZnO MWs and the potential application for wavelength-tuning ultraviolet light sources.

摘要

使用氧化锌作为活性层来制造混合异质结发光二极管有望成为一种有效的紫外光源方法。通过化学气相沉积法制备了具有受控镓(Ga)掺入的单个氧化锌微米线(ZnO/Ga MWs)。研究发现,随着 Ga 掺入浓度的增加,氧化锌微米线的近带边(NBE)光致发光逐渐从 390nm 蓝移到 370nm。制备了由单个 ZnO/Ga MW 和 p-GaN 组成的异质结二极管。随着注入电流的增加,界面发射可以得到有效抑制,典型的 NBE 发射主导电致发光(EL)。特别是,随着 Ga 掺杂浓度的增加,基于 ZnO/Ga MW 的异质结二极管的主导 EL 发射波长从 384nm 蓝移到 372nm,蓝移可以归因于 Ga 掺入引起的 Burstein-Moss 效应。本工作证明了 ZnO MW 光学带隙工程的可行性及其在波长调谐紫外光源中的潜在应用。

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