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首页> 外文期刊>Optical Materials >Investigation of valence electron excitation and plasmonic enhancement in sputter grown NMZO thin films: For energy harvesting applications
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Investigation of valence electron excitation and plasmonic enhancement in sputter grown NMZO thin films: For energy harvesting applications

机译:溅射生长的NMZO薄膜中价电子激发和等离子体增强的研究:用于能量收集应用

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摘要

We report a novel approach of sputter-stimulated plasmonic generation in Na-doped MgZnO (NMZO) thin films. Sputtering of material during film growth by utilizing secondary direct-coupled ion-source present in dual-ion beam sputtering system leads to the generation of nanoclusters of its constituent elements due to different sputtering-out rates of various elements present in the films. The authentication of plasmonic generation in NMZO is conducted as follows a) identification of plasmonic signature in electron energy loss spectra obtained by ultraviolet photoelectron spectroscopy measurement, b) valence bulk, valence surface, and particle plasmon resonance energy calculations are performed, and each plasmon peak is indexed with corresponding plasmon energy peak of different nanoclusters, and c) spectroscopic ellipsometric measurement is deployed to verify plasmonic behavior by investigating different optical properties. Additionally, incorporation of the plasmonic feature along with alkali metals plays a crucial role in the improvement of the performance of solar cells. Therefore, plasmon enhanced NMZO as a backscattering layer in between CIGSe/back contact is probed to ascertain the additional benefits of 1) Na incorporation into the absorber layer as a result of the Na diffusion from the NMZO layer, and 2) improvement in the morphology of the CIGSe thin film with the incorporation of NMZO layer in between the back-contact and CIGSe. The diffusion of Na into the absorber layer is probed by deploying secondary ion mass spectroscopy measurements, and improvement in the morphology of CIGSe with the incorporation of NMZO layer between the back-contact/absorber is investigated using field-emission scanning electron microscope analysis.
机译:我们报告了一种新的方法,在钠掺杂的MgZnO(NMZO)薄膜中溅射激发的等离子体激元产生。通过利用双离子束溅射系统中存在的次级直接耦合离子源在膜生长过程中进行材料溅射,由于膜中存在的各种元素的溅射率不同,导致其构成元素形成了纳米团簇。 NMZO中的等离激元产生的验证如下进行:a)识别通过紫外光电子能谱测量获得的电子能量损失谱中的等离激元特征; b)进行化合价,化合价和粒子等离振子共振能计算,并且每个等离激元峰用不同纳米团簇的相应等离激元能量峰标明指数,并且c)使用光谱椭偏测量通过研究不同的光学性质来验证等离激元行为。另外,等离子特征与碱金属的结合在改善太阳能电池的性能中起关键作用。因此,探查了等离激元增强的NMZO作为CIGSe /背接触之间的反向散射层,以确定以下附加优点:1)Na从NMZO层扩散而掺入吸收层,以及2)形态改善在背面接触件和CIGSe之间引入了NMZO层的CIGSe薄膜。通过部署二次离子质谱测量来探测Na进入吸收层的扩散,并使用场发射扫描电子显微镜分析研究了在背接触/吸收层之间引入NMZO层后CIGSe形态的改善。

著录项

  • 来源
    《Optical Materials》 |2019年第2期|372-377|共6页
  • 作者单位

    Indian Inst Technol Indore, Elect Engn, HNRG, Simrol 453552, Madhya Pradesh, India;

    Indian Inst Technol Indore, Elect Engn, HNRG, Simrol 453552, Madhya Pradesh, India;

    Indian Inst Technol Indore, Elect Engn, HNRG, Simrol 453552, Madhya Pradesh, India;

    Indian Inst Technol Indore, Elect Engn, HNRG, Simrol 453552, Madhya Pradesh, India;

    Indian Inst Informat Technol Una, Dept Elect & Commun Engn, Una 177005, Himachal Prades, India;

    Univ Grants Commiss, Dept Atom Energy, Consortium Sci Res, Indore, Madhya Pradesh, India;

    Univ Grants Commiss, Dept Atom Energy, Consortium Sci Res, Indore, Madhya Pradesh, India;

    Indian Inst Technol Indore, Elect Engn, HNRG, Simrol 453552, Madhya Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plasmons; UPS; NMZO; Sputtered; Ultrathin solar cells;

    机译:Plasmons;UPS;NMZO;溅射;Ultrathin太阳能电池;

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