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Electrodeposition of Mg doped ZnO thin film for the window layer of CIGS solar cell

机译:CIGS太阳能电池窗口层的Mg掺杂ZnO薄膜的电沉积

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摘要

Mg doped ZnO (ZMO) film with the tunable bandgap can adjust the conduction band offset of the window/chalcopyrite absorber heterointerface to positive to reduce the interface recombination and resulting in an increasement of chalcopyrite based solar cell efficiency. A systematic study of the effect of the electrodeposition potential on morphology, crystalline structure, crystallographic orientation and optical properties of ZMO films was investigated. It is interestingly found that the prepared doped samples undergo a significant morphological change induced by the deposition potential. With negative shift of deposition potential, an obvious morphology evolution from nanorod structrue to particle covered films was observed. A possible growth mechanism for explaining the morphological change is proposed and briefly discussed. The combined optical techniques including absorption, transmission and photoluminescence were used to study the obtained ZMO films deposited at different potential. The sample deposited at 0.9 V with the hexagonal nanorods morphology shows the highest optical transparency of 92%. The photoluminescence spectra reveal that the crystallization of the hexagonal nanorod ZMO thin film deoposited at 0.9 V is much better than the particles covered ZMO thin film. Combining the structural and optical properties analysis, the obtained normal hexagonal nanorod ZMO thin film could potentially be useful in nanostructured chalcopyrite solar cells to improve the device performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:具有可调带隙的掺Mg的ZnO(ZMO)膜可以将窗口/黄铜矿吸收体异质界面的导带偏移调整为正,以减少界面复合,从而提高基于黄铜矿的太阳能电池效率。研究了电沉积电势对ZMO膜的形态,晶体结构,晶体学取向和光学性质的影响。有趣地发现,制备的掺杂样品经历了由沉积电势引起的显着的形态变化。随着沉积电位的负迁移,观察到从纳米棒结构到颗粒覆盖膜的明显形态演变。提出并简要讨论了可能的解释形态变化的生长机理。结合吸收,透射和光致发光等光学技术研究了在不同电势下沉积的ZMO薄膜。以六边形纳米棒形态在0.9 V下沉积的样品显示出最高的光学透明度,为92%。光致发光光谱表明,在0.9 V下析出的六角形纳米棒ZMO薄膜的结晶度比覆盖ZMO薄膜的粒子好得多。结合结构和光学性能分析,所获得的普通六边形纳米棒ZMO薄膜可潜在地用于纳米结构的黄铜矿太阳能电池中以改善器件性能。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2016年第30期|217-224|共8页
  • 作者单位

    Xiangtan Univ, Coll Chem, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Coll Chem, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Lab Quantum Engn & Micronano Energy Technol, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Fac Phys & Optoelect, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Lab Quantum Engn & Micronano Energy Technol, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Fac Phys & Optoelect, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Lab Quantum Engn & Micronano Energy Technol, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Fac Phys & Optoelect, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Coll Chem, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Lab Quantum Engn & Micronano Energy Technol, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Fac Phys & Optoelect, Xiangtan 411105, Hunan, Peoples R China;

    Xiangtan Univ, Hunan Key Lab Micronano Energy Mat & Devices, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Lab Quantum Engn & Micronano Energy Technol, Xiangtan 411105, Hunan, Peoples R China|Xiangtan Univ, Fac Phys & Optoelect, Xiangtan 411105, Hunan, Peoples R China;

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

    Mg doped ZnO; Electrochemical deposition; Solar cell; Structural and optical properties;

    机译:镁掺杂ZnO;电化学沉积;太阳能电池;结构和光学性能;

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