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Characterization and modeling of cadmium chloride treated cadmium telluride/cadmium sulfide thin-film solar cells.

机译:氯化镉处理的碲化镉/硫化镉薄膜太阳能电池的表征和建模。

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摘要

CdTe photovoltaic technology has the potential to become a leading energy producer in the coming decades. Its physical properties are well suited for photovoltaic energy conversion. A key processing step in the production of high efficiency CdTe/CdS solar cells is a post-CdTe deposition heat treatment with CdCl2, which can improve performance by promoting CdTe rectrystallization, QE response, defect passivation and others. Understanding the effects of the CdCl2 treatment is crucial in order to optimize processing conditions and improve performance. This study investigates the effects of variations of CdCl2 treatment duration on CdTe/CdS solar cells manufactured at Colorado State University. In order to investigate the optimal time of CdCl 2 treatment, sample solar cells were tested for microstructural and performance properties. Device microstructure was analyzed using X-ray diffraction (XRD), scanning electron microscopy (SEM), and atomic force microscopy (AFM). Device performance was analyzed using current density-voltage (J-V) measurements, time-resolved photoluminescence (TRPL), quantum efficiency (QE), and laser beam induced current (LBIC) measurements.;Little change in microstructure was observed with extended CdCl 2 treatment and is attributed to the high CdTe deposition temperatures used by heat pocket deposition (HPD). This deposition technique allows for large initial grains to be formed with low lattice strain energy which prevents recrystallization and grain growth that is often seen with other deposition techniques.;The CdCl2 treatment initially improves performance significantly, but it was shown to that extending the CdCl2 treatment can reduce performance. Overall performance was reduced despite an increase in minority carrier lifetime values. The mechanism of reduced performance is suggested to be the formation of a low bandgap CdTe layer resulting from sulfur diffusion from the CdS layer. Sulfur diffusion primarily occurs during the CdCl 2 treatment and also leads to thinning of the CdS layer.;Solar cell modeling was employed to investigate possible mechanisms for performance degradation. Modeling was done with AMPS and SCAPS modeling software. Models were created to investigate the effects of minority carrier lifetime, CdS thickness, and a low bandgap CdTe layer. Modeling results showed that the formation of a low bandgap CdTe layer combined with CdS thinning reduces device performance. Further research is needed using a statistically significant number of samples to investigate other possible degradation mechanisms associated with extended CdCl2 treatment.
机译:未来几十年,CdTe光伏技术有可能成为领先的能源生产商。它的物理性质非常适合光伏能量转换。高效CdTe / CdS太阳能电池生产中的关键工艺步骤是使用CdCl2进行CdTe沉积后热处理,可通过促进CdTe再结晶,QE响应,缺陷钝化等改善性能。为了优化工艺条件和提高性能,了解CdCl2处理的效果至关重要。这项研究调查了CdCl2处理持续时间的变化对科罗拉多州立大学生产的CdTe / CdS太阳能电池的影响。为了研究CdCl 2处理的最佳时间,对样品太阳能电池的微观结构和性能进行了测试。使用X射线衍射(XRD),扫描电子显微镜(SEM)和原子力显微镜(AFM)分析设备的微结构。使用电流密度-电压(JV)测量,时间分辨光致发光(TRPL),量子效率(QE)和激光束感应电流(LBIC)测量来分析器件性能;延长的CdCl 2处理观察到的微结构变化很小这归因于热袋沉积(HPD)使用的高CdTe沉积温度。这种沉积技术允许以较低的晶格应变能形成较大的初始晶粒,从而防止了其他沉积技术经常出现的重结晶和晶粒长大。CdCl2处理最初可以显着提高性能,但事实证明,扩展了CdCl2处理会降低性能。尽管少数载流子寿命值增加了,但总体性能却下降了。降低性能的机理被认为是由于硫从CdS层扩散而形成的低带隙CdTe层。硫的扩散主要发生在CdCl 2处理期间,并且还会导致CdS层变薄。;采用太阳能电池模型研究了性能下降的可能机制。建模是使用AMPS和SCAPS建模软件完成的。创建模型以研究少数载流子寿命,CdS厚度和低带隙CdTe层的影响。建模结果表明,结合CdS减薄的低带隙CdTe层的形成会降低器件性能。需要使用大量统计学上的样品进行进一步研究,以研究与扩展CdCl2处理相关的其他可能的降解机理。

著录项

  • 作者

    Maxwell, Graham Lane.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Physics Condensed Matter.;Engineering Materials Science.
  • 学位 M.S.
  • 年度 2010
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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