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Influence of Synthesis-Dependent Structural Morphology on Performance of Natural Dye-Sensitized ZnO Solar Cells

机译:合成依赖性结构形态对天然染料敏化ZnO太阳能电池性能的影响

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摘要

ZnO nanostructures were synthesized by solvothermal (STT), solution combustion (SCT), and template synthesis (TS) techniques, showing the formation of rod-like, dot-like, and wire-like morphology. Pure-phase wurtzite structure was observed for STT and SCT samples, and mixed-phase wurtzite structure for the TS sample. Strong excitonic peaks appeared for STT and TS samples, whereas the excitonic peak tended to shift for the SCT sample. Dye-sensitized solar cell device structures using natural anthocyanin dye were fabricated and their I-V characteristics studied. The ZnO nanowire-based device showed the maximum open-circuit voltage (V-oc) and short-circuit current density (I-sc) in comparison with the rod-like and flake-like ZnO nanostructures. The photoconversion efficiency (PCE) was found to be 3.2%, 4.4%, and 5.4% for the rod-, dot-, and wire-like morphology, respectively. The enhancement in the PCE can be attributed to increased charge collection at the interface of the ZnO photoanode and electrolyte layer.
机译:通过溶液(STT),溶液燃烧(SCT)和模板合成(TS)技术合成ZnO纳米结构,显示棒状,点状和线状形态的形成。对于STT和SCT样品,观察到纯相抗颗粒结构,以及TS样品的混合相抗晶结构。 STT和TS样品出现强烈的激子峰,而激子峰倾向于转移SCT样品。制造使用天然花青素染料的染料敏化太阳能电池器件结构,研究了它们的I-V特性。与棒状和片状ZnO纳米结构相比,基于ZnO纳米线的装置显示最大开路电压(V-OC)和短路电流密度(I-SC)。发现光电转化效率(PCE)分别为杆状,点和电线形态的3.2%,4.4%和5.4%。 PCE中的增强可归因于在ZnO PhotoNode和电解质层的界面处增加电荷收集。

著录项

  • 来源
    《JOM》 |2019年第4期|共8页
  • 作者单位

    IK Gujral Punjab Tech Univ Kapurthala 144603 India;

    IK Gujral Punjab Tech Univ Kapurthala 144603 India;

    IK Gujral Punjab Tech Univ Kapurthala 144603 India;

    Dongguk Univ Nano Informat Technol Acad Quantum Funct Semicond Res Ctr Seoul 100715 South Korea;

    Dongguk Univ Nano Informat Technol Acad Quantum Funct Semicond Res Ctr Seoul 100715 South Korea;

    Dongguk Univ Nano Informat Technol Acad Quantum Funct Semicond Res Ctr Seoul 100715 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有色金属冶炼;金属学与金属工艺;
  • 关键词

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