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Large enhancement of UV luminescence emission of ZnO nanoparticles by coupling excitons with Ag surface plasmons

机译:通过用Ag表面等离子体偶联激子偶联ZnO纳米粒子的UV发光发射大量增强

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摘要

For an emitter based on bandgap emission, defect mediated emission has always been considered as the most important loss. Here, a novel approach which can overcome such emission loss is proposed using films of ZnO nanoparticles (NPs) on Ag NPs embedded in silica. The effects of the size of Ag NPs on the enhancement of ultra-violet (UV) photoluminescence (PL) of ZnO NPs for such a system have been studied. For the ZnO NPs without Ag NPs, two emission bands have been seen: one in the UV region and the other one in the visible region. This UV PL emission intensity has been seen to increase significantly with a drastic reduction of the visible PL emission intensity in the case of the sample containing ZnO NPs on silica embedded Ag NPs. A linear increase in UV emission with increase in the size of Ag NPs has been found. For the largest size of Ag NPs (similar to 10 nm, considered in the present study), the PL emission enhancement becomes about 4 times higher than that of sample without Ag NPs. The observed enhancement of the UV PL emission was caused by coupling between spontaneous emission in ZnO and surface plasmons of Ag. The larger Ag NPs provided a larger scattering cross section in coupling surface plasmons to light leading to an increase in UV emission. Thus, it is possible to convert the useless defect emission to the useful excitonic emission with a large enhancement factor. Published by AIP Publishing.
机译:对于基于带隙排放的发射器,缺陷介导的排放一直被认为是最重要的损失。这里,可以使用嵌入二氧化硅中的Ag NPS的ZnO纳米颗粒(NPS)薄膜提出了一种可以克服这种排放损失的新方法。已经研究了AG NPS对这种系统的ZnO NPS的紫外线(UV)光致发光(PL)增强的影响。对于没有Ag NP的ZnO NPS,已经看到了两个发射带:在UV区域中的一个,另一个在可见区域中的另一个发射带。已经看到这种UV PL发射强度在含有ZnO NPS上的含有ZnO NPS上的样品上的可见PL发射强度的急剧降低显着增加。已经找到了UV发射随着AG NPS大小的增加的线性增加。对于最大尺寸的AG NPS(类似于在本研究中考虑的10nm),PL发射增强比没有AG NPS的样品的增强量大约4倍。观察到的UV PL发射的增强是由ZnO和Ag的表面等离子体之间的自发排放之间的偶联引起的。较大的AG NPS在耦合表面等离子体中提供了更大的散射横截面,以发光,导致UV排放增加。因此,可以将无用的缺陷发射转换为具有大的增强因子的有用兴奋发射。通过AIP发布发布。

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  • 来源
    《Journal of Applied Physics 》 |2018年第15期| 154302.1-154302.4| 共4页
  • 作者单位

    Sidho Kanho Birsha Univ Dept Phys Ranchi Rd Purulia 723104 W Bengal India;

    Sidho Kanho Birsha Univ Dept Phys Ranchi Rd Purulia 723104 W Bengal India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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