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Experimental study of Pulsed Laser Deposited Cu2ZnSnS 4 (CZTS) thin films for photovoltaic applications.

机译:用于光伏应用的脉冲激光沉积Cu2ZnSnS 4(CZTS)薄膜的实验研究。

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摘要

Thin film solar cells are gaining momentum as a renewable energy source. Reduced material requirements (< 2 mum in total film thickness) coupled with fast, low-cost production processes make them an ideal alternative to Si (>15 mum in total thickness) solar cells. Among the various thin film solar absorbers that have been proposed, CZTS (Cu2ZnSnS4) has become the subject of intense interest because of its optimal band gap (1.45 eV), high absorption coefficient (104 cm--1 ) and abundant elemental components.;Pulsed Laser Deposition (PLD) provides excellent control over film composition since films are deposited under high vacuum with excellent stoichiometry transfer from the target. Defect-free, near-stoichiometric poly-crystalline CZTS thin films were deposited using PLD from a stoichiometrically close CZTS target (Cu2.6Zn1.1Sn0.7S3.44). The effects of fabrication parameters such as laser energy density, deposition time, substrate temperature and sulfurization (annealing in sulfur) on the surface morphology, composition and optical absorption of the CZTS thin films were examined. The results show that the presence of secondary phases, present both in the bulk and on the surface, affected the electrical and optical properties of the CZTS thin films and the CZTS based TFSCs. After selectively etching away the secondary phases with DIW, HCl and KCN, it was observed that their removal improved the performance of CZTS based TFSCs. Optimal CZTS thin films exhibited an optical band gap of 1.54 eV with an absorption coefficient of 4x10 4cm-1 with a low volume of secondary phases. A TFSC fabricated with the best CZTS thin film obtained from the experimental study done in this thesis showed a conversion efficiency of 6.41% with Voc = 530 mV, Jsc= 27.5 mA/cm2 and a fill factor of 0.44.
机译:薄膜太阳能电池作为可再生能源正获得发展势头。减少的材料要求(总薄膜厚度小于2微米)加上快速,低成本的生产工艺使其成为Si(总厚度大于15微米)太阳能电池的理想替代品。在已提出的各种薄膜太阳能吸收器中,CZTS(Cu2ZnSnS4)由于其最佳带隙(1.45 eV),高吸收系数(104 cm--1)和丰富的元素成分而成为人们关注的主题。脉冲激光沉积(PLD)提供了对薄膜组成的出色控制,因为薄膜是在高真空下沉积的,并且具有出色的化学计量从目标转移的能力。使用PLD从化学计量接近的CZTS靶材(Cu2.6Zn1.1Sn0.7S3.44)沉积无缺陷,接近化学计量的多晶CZTS薄膜。研究了诸如激光能量密度,沉积时间,衬底温度和硫化(在硫中退火)等制造参数对CZTS薄膜的表面形态,组成和光吸收的影响。结果表明,存在于主体和表面中的次生相都会影响CZTS薄膜和基于CZTS的TFSC的电学和光学性质。用DIW,HCl和KCN选择性腐蚀掉第二相后,观察到它们的去除改善了基于CZTS的TFSC的性能。最佳的CZTS薄膜的光学带隙为1.54 eV,吸收系数为4x10 4cm-1,次级相体积较小。通过本文的实验研究获得的具有最佳CZTS薄膜的TFSC,在Voc = 530 mV,Jsc = 27.5 mA / cm2,填充系数为0.44的条件下,转换效率为6.41%。

著录项

  • 作者

    Nandur, Abhishek S.;

  • 作者单位

    State University of New York at Binghamton.;

  • 授予单位 State University of New York at Binghamton.;
  • 学科 Materials science.;Energy.;Physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

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