首页> 外文学位 >Effects of nanoassembly on the optoelectronic properties of cadmium telluride - zinc oxide nanocomposite thin films for use in photovoltaic devices.
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Effects of nanoassembly on the optoelectronic properties of cadmium telluride - zinc oxide nanocomposite thin films for use in photovoltaic devices.

机译:纳米组件对用于光伏器件的碲化镉-氧化锌纳米复合薄膜的光电性能的影响。

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摘要

Quantum-scale semiconductors embedded in an electrically-active matrix have the potential to improve photovoltaic (PV) device power conversion efficiencies by allowing the solar spectral absorption and photocarrier transport properties to be tuned through the control of short and long range structure. In the present work, the effects of phase assembly on quantum confinement effects and carrier transport were investigated in CdTe - ZnO nanocomposite thin films for use as a spectrally sensitized n-type heterojunction element. The nanocomposites were deposited via a dual-source, sequential radio-frequency (RF) sputter technique that offers the unique opportunity for in-situ control of the CdTe phase spatial distribution within the ZnO matrix. The manipulation of the spatial distribution of the CdTe nanophase allowed for variation in the electromagnetic coupling interactions between semiconductor domains and accompanying changes in the effective carrier confinement volume and associated spectral absorption properties. Deposition conditions favoring CdTe connectivity had a red shift in absorption energy onset in comparison to phase assemblies with a more isolated CdTe phase.;While manipulating the absorption properties is of significant interest, the electronic behavior of the nanocomposite must also be considered. The continuity of both the matrix and the CdTe influenced the mobility pathways for carriers generated within their respective phases. Photoconductivity of the nanocomposite, dependent upon the combined influences of nanostructure-mediated optical absorption and carrier transport path, increased with an increased semiconductor nanoparticle number density along the applied field direction.;Mobility of the carriers in the nanocomposite was further mediated by the interface between the ZnO and CdTe nanophases which acts as a source of carrier scattering centers. These effects were influenced by low temperature annealing of the nanocomposite which served to increase the crystallinity of the phases without modification of the as-deposited phase assembly and associated absorption properties.;Integration of the nanocomposite as an n-type heterojunction element into a PV device demonstrated the ability to tune device response based on the spectral absorption of the nanocomposite sensitizer film as dictated by the phase assembly. Overall the various phase assemblies studied provided increased opportunity for optimization of the absorption and carrier transport properties of the nanocomposite thin films.
机译:嵌入电活性基质中的量子级半导体具有潜力,通过允许通过控制短程和长程结构来调整太阳光谱吸收和光载流子传输特性,可以提高光伏(PV)器件的功率转换效率。在目前的工作中,研究了相组装对量子限制效应和载流子输运的影响,在CdTe-ZnO纳米复合薄膜中用作光谱敏化n型异质结元件。纳米复合材料是通过双源,顺序射频(RF)溅射技术沉积的,该技术为ZnO基质内CdTe相空间分布的原位控制提供了独特的机会。 CdTe纳米相空间分布的操纵允许半导体域之间的电磁耦合相互作用发生变化,并伴随有效载流子限制体积和相关光谱吸收特性的变化。与具有更隔离的CdTe相的相组件相比,有利于CdTe连通性的沉积条件在吸收能的发生上发生了红移。尽管对吸收性能的控制非常重要,但还必须考虑纳米复合材料的电子行为。基质和CdTe的连续性影响了在各自相中生成的载流子的迁移路径。纳米复合材料的光电导性取决于纳米结构介导的光吸收和载流子传输路径的综合影响,随着沿应用电场方向的半导体纳米粒子数密度的增加而增加。纳米复合材料中载流子的迁移率进一步受到介电常数的影响。 ZnO和CdTe纳米相作为载流子散射中心的来源。这些作用受到纳米复合材料的低温退火的影响,该退火可用于提高相的结晶度,而不会改变沉积态的相组装和相关的吸收性能。纳米复合材料作为n型异质结元素集成到PV器件中证明了根据相复合物指示的纳米复合敏化剂薄膜的光谱吸收来调节设备响应的能力。总体而言,所研究的各种相组件为纳米复合薄膜的吸收和载流子传输特性的优化提供了更多的机会。

著录项

  • 作者

    Beal, Russell Joseph.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering General.;Nanotechnology.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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