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首页> 外文期刊>Applied Surface Science >Development of gold induced surface plasmon enhanced CIGS absorption layer on polyimide substrate
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Development of gold induced surface plasmon enhanced CIGS absorption layer on polyimide substrate

机译:聚酰亚胺基体上金诱导的表面等离子体增强CIGS吸收层的研制

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摘要

Localized surface plasmon resonance (LSPR) with metal nanoparticles is the promising phenomenon to increase light absorption by trapping light in thin film solar cells. In this study we demonstrate a successful LSPR effect with gold (Au) nanoparticles onto the Cu(In,Ga)Se_2 (CIGS) absorption layer. First, the CIGS absorber layers is fabricated onto the Mo coated polyimide (PI) substrate by using two stage process as DC sputtering of CIG thin film followed by the selenization at 400 ℃ Finally, the Au nanoparticles are deposited onto the CIGS layer with increasing particles size from 4-15 nm by using sputter coater for 10-120 s. The X-ray diffraction (XRD) patterns confirm the formation of CIGS/Au nanocom-posite structure with prominent peak shift of CIGS reflections and increasing intensity for Au phase. The CIGS/Au nanocomposite morphologies with Au particle size distribution uniformity and surface coverage is examined under ultra-high resolution field effect scanning electron microscope (UHR-FESEM). A peak at 176 cm~(-1) in Raman spectra, associated with the "Al" mode of lattice vibration for the attributed to the pure chalcopyrite structure. The secondary ion mass spectroscopy (SIMS) showed ~200 nm depth converge of Au nanoparticles into the CIGS absorption layer. The optical properties as transmittance, reflectance and absorbance of CIGS/Au layers were found to expand in the infrared region and the LSPR effect is the most prominent for Au particles (5-7 nm) deposited for 60 s. The absorption coefficient and band gap measurement also confirms that the LSPR effect for 5-7 nm Au particles with band gap improvement from 1.31 to 1.52 eV for CIGS/Au layer as the defect density decreases due to the deposition of Au nanoparticles onto the CIGS layer. Such LSPR effect in CIGS/Au nanocomposite absorption layer will be a key parameter to further improve performance of the solar cell.
机译:具有金属纳米粒子的局部表面等离子体激元共振(LSPR)是通过将光捕获在薄膜太阳能电池中来增加光吸收的有前途的现象。在这项研究中,我们证明了金(Au)纳米粒子在Cu(In,Ga)Se_2(CIGS)吸收层上具有成功的LSPR效应。首先,通过分两步进行CIG薄膜的直流溅射,然后在400℃下硒化,在CI吸收层上制备CIGS吸收层,最后将Au纳米粒子沉积在CIGS层上通过使用溅射镀膜机10-120 s从4-15 nm的尺寸。 X射线衍射(XRD)图案证实了CIGS / Au纳米复合材料结构的形成,具有CIGS反射的明显峰移和Au相强度的增加。在超高分辨率场效应扫描电子显微镜(UHR-FESEM)下检查了具有Au粒径分布均匀性和表面覆盖率的CIGS / Au纳米复合材料形态。拉曼光谱中一个在176 cm〜(-1)处的峰,与晶格振动的“ Al”模式有关,这归因于纯黄铜矿结构。二次离子质谱(SIMS)显示,约200 nm深度的金纳米颗粒汇聚到CIGS吸收层中。发现CIGS / Au层的光学性质(透射率,反射率和吸收率)在红外区域扩展,并且LSPR效应对于沉积60 s的Au颗粒(5-7 nm)最为突出。吸收系数和带隙测量也证实了CIGS / Au层的5-7 nm Au颗粒的带隙性能从1.31 eV改善到1.52 eV,这是由于Au纳米颗粒沉积到CIGS层上导致缺陷密度降低而引起的。 。 CIGS / Au纳米复合材料吸收层中的这种LSPR效应将是进一步提高太阳能电池性能的关键参数。

著录项

  • 来源
    《Applied Surface Science》 |2013年第1期|757-763|共7页
  • 作者单位

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

    Semiconductor Materials Processing Laboratory, School of Advanced Materials Engineering, College of Engineering, Research Center for Advanced Materials Development (RCAMD), Chonbuk National University, Deokjin-dong 664-14,Jeonju, 561-756, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cu(In,Ga)Se_2 (CIGS); Localized surface plasmon resonance (LSPR); Metal nanoparticles; Polyimide (PI); Optical studies;

    机译:Cu(In;Ga)Se_2(CIGS);局部表面等离子体共振(LSPR);金属纳米颗粒;聚酰亚胺(PI);光学研究;

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