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首页> 外文期刊>Nanoscale >Enhancing UV-emissions through optical and electronic dual-function tuning of Ag nanoparticles hybridized with n-ZnO nanorods/p-GaN heterojunction light-emitting diodes
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Enhancing UV-emissions through optical and electronic dual-function tuning of Ag nanoparticles hybridized with n-ZnO nanorods/p-GaN heterojunction light-emitting diodes

机译:通过光学和增强UV-emissions电子Ag)的双重功能优化纳米粒子杂化与n-ZnO纳米棒/ p-GaN异质结发光二极管

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摘要

ZnO nanorods (NRs) and Ag nanoparticles (NPs) are known to enhance the luminescence of light-emitting diodes (LEDs) through the high directionality of waveguide mode transmission and efficient energy transfer of localized surface plasmon (LSP) resonances, respectively. In this work, we have demonstrated Ag NP-incorporated n-ZnO NRs/p-GaN heterojunctions by facilely hydrothermally growing ZnO NRs on Ag NP-covered GaN, in which the Ag NPs were introduced and randomly distributed on the p-GaN surface to excite the LSP resonances. Compared with the reference LED, the light-output power of the near-band-edge (NBE) emission (ZnO, lambda = 380 nm) of our hybridized structure is increased almost 1.5-2 times and can be further modified in a controlled manner by varying the surface morphology of the surrounding medium of the Ag NPs. The improved light-output power is mainly attributed to the LSP resonance between the NBE emission of ZnO NRs and LSPs in Ag NPs. We also observed different behaviors in the electroluminescence (EL) spectra as the injection current increases for the treatment and reference LEDs. This observation might be attributed to the modification of the energy band diagram for introducing Ag NPs at the interface between n-ZnO NRs and p-GaN. Our results pave the way for developing advanced nano-structured LED devices with high luminescence efficiency in the UV emission regime.
机译:氧化锌纳米棒(NRs)和Ag纳米颗粒(NPs)的发光增强通过高发光二极管(led)传输和方向性的波导模式有效的局部表面能量转移等离子体(LSP)共振。工作,我们演示了Ag NP-incorporated通过轻快地n-ZnO NRs / p-GaN垂直热水地生长氧化锌NRs Ag NP-covered氮化镓,Ag)介绍了NPs和随机分布在p-GaN表面激发LSP的共鸣。参考LED的光输出功率near-band-edge (NBE)排放(氧化锌,λ= 380海里)杂化结构的增加1.5 - 2倍,可以进一步修改控制的方式通过改变地表形态学的周围介质NPs。归因于LSP NBE之间的共振发射的氧化锌NRs和Ag NPs的物流服务商。观察不同的行为致发光(EL)光谱的注入当前增加治疗和参考发光二极管。能带图的修改引入Ag NPs n-ZnO之间的接口NRs和p-GaN。发展先进纳米结构导致设备紫外线发光效率高排放机制。

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