4.8 Article

Color-Tunable ZnO/GaN Heterojunction LEDs Achieved by Coupling with Ag Nanowire Surface Plasmons

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 18, 页码 15812-15819

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b00940

关键词

color-tunable electroluminescence; p-GaN/n-ZnO heterostructures; Ag nanowire surface plasmons; exciton-plasmon resonance coupling; defect-related emission

资金

  1. Program of the NSFC [61574031, 21501167, 61505026, 51732003, 61604037]
  2. 111 Project [B13013]
  3. Fund from Jilin Province [20160101324JC, 20160520115JH, 20160520009JH]
  4. Fundamental Research Funds for the Central Universities [2412017FZ010]

向作者/读者索取更多资源

Color-tunable light-emitting devices (LEDs) have a great impact on our daily life. Herein, LEDs with tunable electroluminescence (EL) color were achieved via introducing Ag nanowires surface plasmons into p-GaN/n-ZnO film heterostructures. By optimizing the surface coverage density of coated Ag nanowires, the EL color was changed continuously from yellow-green to blue-violet. Transient-state and temperature-variable fluorescence emission characterizations uncovered that the spontaneous emission rate and the internal quantum efficiency of the near-UV emission were increased as a consequence of the resonance coupling interaction between Ag nanowires surface plasmons and ZnO excitons. This effect induces the selective enhancement of the blue-violet EL component but suppresses the defect-related yellow-green emission, leading to the observed tunable EL color. The proposed strategy of introducing surface plasmons can be further applied to many other kinds of LEDs for their selective enhancement of EL intensity and effective adjustment of the emission color.

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