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ZnO Nanowire Arrays Sensitized with Different Absorber Materials for Fabrication of Nanostructured Solar Cells

机译:ZnO纳米线阵列敏化不同吸收剂材料,用于制造纳米结构太阳能电池

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摘要

In this manuscript we report the photosensitization of electrodeposited ZnO nanowire arrays with CdS, CdTe, CuZnS (CZS) and Cu_2ZnSnS_4 (CZTS) extremely thin films prepared by: Successive Ion Layer Absorption and Reaction (SILAR), electrochemical deposition (ECD) and Close Space Sublimation (CSS) methods. The structural and optical properties of the ZnO/absorber nanostructures were characterized. 25 nm thick CdS nanoparticle-like shell was obtained after 40 deposition cycles by SILAR. CdTe shell deposited by the same technique is about 15 nm thick (for 20 cycles), whereas the CZS shell is thicker (40 nm) after 3 cycles. The layer thickness is controlled by the deposition cycles number. The CdTe film deposited by CSS (about 40 nm thick) is formed by 20 nm large nanoparticles. The thickness of electrodeposited CZTS layer is controlled by the passed deposition charge density. The room-temperature wet processes appear suitable to prepare good quality and uniform nanometer-thick films of absorbing materials.
机译:在此手稿中,我们报告了用以下方法制备的CdS,CdTe,CuZnS(CZS)和Cu_2ZnSnS_4(CZTS)极薄薄膜对电沉积ZnO纳米线阵列的光敏性:连续离子层吸收和反应(SILAR),电化学沉积(ECD)和近距离空间升华(CSS)方法。表征了ZnO /吸收剂纳米结构的结构和光学性质。 SILAR经过40个沉积循环后,获得了25 nm厚的CdS纳米颗粒状壳。通过相同技术沉积的CdTe壳约15纳米厚(20个循环),而3周期后CZS壳较厚(40纳米)。层厚度由沉积循环数控制。 CSS沉积的CdTe膜(约40 nm厚)是由20 nm大纳米颗粒形成的。电沉积的CZTS层的厚度由通过的沉积电荷密度控制。室温湿法工艺似乎适合制备高质量和均匀的纳米厚度的吸收材料薄膜。

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  • 来源
    《Photovoltaics for the 21st century 7》|2011年|p.119-128|共10页
  • 会议地点 Boston MA(US);Boston MA(US)
  • 作者单位

    CEA-Grenoble, LETI-Minatec Campus, 17 Rue des Martyrs, 38054 Grenoble, France;

    CEA-Grenoble, LETI-Minatec Campus, 17 Rue des Martyrs, 38054 Grenoble, France;

    CNRS, LTM, 17 Rue des Martyrs, 38054 Grenoble, France;

    CNRS, Institut de Chimie et des Materiaux de Paris-Est, 2-8 Rue Henri Dunant, 94320 Thiais, France;

    CEA-Grenoble, LETI-Minatec Campus, 17 Rue des Martyrs, 38054 Grenoble, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学电源、电池、燃料电池;
  • 关键词

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