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FORMATION AND DEGRADATION OF COPPER(2-X)SULFIDE / CADMIUM SULFIDE SINGLE CRYSTAL HETEROJUNCTIONS: A HIGH RESOLUTION TRANSMISSION ELECTRON MICROSCOPE STUDY (INTERFACE).

机译:硫化铜(2-X)/硫化镉单晶异质结的形成和降解:高分辨透射电镜研究(界面)。

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摘要

The Cu(,2-x)S/CdS photovoltaic device is the most thoroughly studied and developed polycrystalline thin-film solar cell. However, many of the fundamental relationships between processing, microstructure, and device performance are essentially unknown. Further improvement of this device will require an understanding of the effects of surface texture, heat treatments, and long term exposure on device efficiency and stability. Critical to understanding these effects is the determination of the Cu(,2-x)S/CdS interface morphology and the phase distribution in the Cu(,2-x)S absorber.; In this study electron-optical methods are applied to the structural characterization of single-crystal Cu(,2-x)S/CdS heterojunctions prepared by the aqueous ion-exchange process. Results obtained by scanning electron microscopy, transmission electron microscopy and diffraction, and cross-sectional high-resolution transmission electron microscopy (XHRTEM) are combined to develop a detailed description of the structural evolution of the Cu(,2-x)S/CdS heterojunction.; The XHRTEM images reveal the two-phase nature of the Cu(,2)S absorber. The tetragonal phase, a high-pressure polymorph of low chalcocite (Cu(,2)S), is found to form the metallurgical junction with CdS if the local surface orientation is nearly basal. However, only low chalcocite is detected in the absorber layer if the surface is steeply inclined to the basal plane. These results are rationalized on the basis of lattice misfit, structural compatibility, and the nucleation of h.c.p.-to-f.c.c. transformation dislocations. Lattice misfit considerations are also found to be useful in explaining the morphology of degraded heterojunctions. In particular, the observed shape and orientation of djurleite (Cu(,1.97)S) domains in low chalcocite are consistent with the minimization of lattice mismatch. The implications of these results for the reproducible fabrication of high efficiency Cu(,2-x)S/CdS solar cells are discussed.
机译:Cu(,2-x)S / CdS光伏器件是最深入研究和开发的多晶薄膜太阳能电池。但是,工艺,微结构和器件性能之间的许多基本关系基本上是未知的。该器件的进一步改进将需要了解表面纹理,热处理以及长期暴露对器件效率和稳定性的影响。了解这些影响的关键是确定Cu(,2-x)S / CdS界面形态以及Cu(,2-x)S吸收剂中的相分布。在这项研究中,将电子光学方法应用于通过水离子交换工艺制备的单晶Cu(,2-x)S / CdS异质结的结构表征。通过扫描电子显微镜,透射电子显微镜和衍射以及截面高分辨率透射电子显微镜(XHRTEM)获得的结果相结合,以详细描述Cu(,2-x)S / CdS异质结的结构演变。; XHRTEM图像揭示了Cu(,2)S吸收剂的两相性质。如果局部表面取向几乎是基础的,则发现四方相(一种低水铝辉石(Cu(,2)S)的高压多晶型物)与CdS形成了冶金结合。但是,如果表面垂直于底面倾斜,则在吸收层中仅检测到低辉石。这些结果是基于晶格失配,结构相容性和h.c.p.到f.c.c的成核而合理化的。变形脱位。还发现晶格失配的考虑因素对解释降解异质结的形态很有用。尤其是,在低辉石矿中观察到的变硬晶石(Cu(,1.97)S)域的形状和取向与晶格失配的最小化相一致。讨论了这些结果对可重复制造的高效Cu(,2-x)S / CdS太阳能电池的影响。

著录项

  • 作者

    SANDS, TIMOTHY DAVID.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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