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Synthesis conditions, light intensity and temperature effect on the performance of ZnO nanorods-based dye sensitized solar cells

机译:合成条件,光强度和温度对ZnO纳米棒基染料敏化太阳能电池性能的影响

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摘要

We present in this work a careful study of the different parameters affecting vertically-aligned ZnO-nanorods (NRs) based dye sensitized solar cells (DSCs). We analyze the effect of synthesis conditions, light intensity, UV light and working temperature, and correlated them to the final photovoltaic properties of the DSC. Although similar studies can be found in the literature for DSCs based on TiO_2, this work is, to our knowledge, the first detailed study carried out for DSC based on vertically-aligned ZnO nanorods. The ZnO NRs were grown between 1.6 and 5.2 靘 long. Electrodes made with 1.6 靘 thickness were used to analyze parameters such as synthesis conditions, light intensity (800-1500Wm~(-2)), UV light irradiation and temperature (25-75℃). We have also carried out initial analysis of the solar cell lifetime under continuous light irradiation at 45 C, and analyzed the ZnO electrode before and after testing. The best photovoltaic response was characterized by a power conversion efficiency of 1.02%, with∫_(sc) of 3.72 mAcm~(-2), V_(oc) of 0.603 V and 45% FF (at 72 ℃), for a ZnO NR electrode of 5.2 靘 thickness. Comparison of our power conversion efficiency values with published data is also presented, as well as a brief discussion on the possible reasons behind the low power conversion efficiency observed for these type of solar cells.
机译:我们目前在这项工作中对影响垂直排列的基于ZnO纳米粒子(NRs)的染料敏化太阳能电池(DSC)的不同参数进行了仔细研究。我们分析了合成条件,光强度,紫外线和工作温度的影响,并将它们与DSC的最终光伏性能相关联。尽管在文献中可以找到基于TiO_2的DSC的类似研究,但据我们所知,这项工作是针对基于垂直排列的ZnO纳米棒的DSC进行的第一个详细研究。 ZnO NRs生长在1.6至5.2靘长之间。用厚度为1.6靘的电极分析合成条件,光强度(800-1500Wm〜(-2)),紫外线照射和温度(25-75℃)等参数。我们还对45℃连续光照射下的太阳能电池寿命进行了初步分析,并在测试前后对ZnO电极进行了分析。对于ZnO,最佳的光伏响应的特征在于功率转换效率为1.02%,∫_(sc)为3.72 mAcm〜(-2),V_(oc)为0.603 V和FF为45%(72℃)。厚度为5.2。的NR电极。还介绍了我们的功率转换效率值与已发布数据的比较,并简要讨论了针对此类太阳能电池观察到的低功率转换效率背后的可能原因。

著录项

  • 来源
    《Journal of power sources》 |2011年第15期|p.6609-6621|共13页
  • 作者单位

    Centre d'lnvestigacid en Nanocie"ncia i Nanotecnologia (CIN2, CSIC-ICN). Campus UAB, Edifici ETSE 2nd Floor. Bellaterra (Barcelona) E-08193, Spain';

    Centre d'lnvestigacid en Nanocie"ncia i Nanotecnologia (CIN2, CSIC-ICN). Campus UAB, Edifici ETSE 2nd Floor. Bellaterra (Barcelona) E-08193, Spain';

    Centre d'lnvestigacid en Nanocie"ncia i Nanotecnologia (CIN2, CSIC-ICN). Campus UAB, Edifici ETSE 2nd Floor. Bellaterra (Barcelona) E-08193, Spain';

    lnstitut de Ciencia de Materials de Barcelona (1CMAB. CSIC), Campus UAB, Bellaterra (Barcelona) E-08193, Spain;

    Centre d'lnvestigacid en Nanocie"ncia i Nanotecnologia (CIN2, CSIC-ICN). Campus UAB, Edifici ETSE 2nd Floor. Bellaterra (Barcelona) E-08193, Spain';

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

    zno nanorods; dye-sensitized solar cells; temperature effect; light intensity effect; uv light effect; stability analysis; hybrid solar cells;

    机译:锌纳米棒染料敏化太阳能电池;温度效应光强效应;紫外线效果稳定性分析;混合太阳能电池;
  • 入库时间 2022-08-18 00:24:31

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