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用于薄膜太阳能电池应用的织构化ZnO@B透明导电氧化物中晶格应变弛豫、吸光度和薄层电阻对厚度的依赖性。

Dependence of lattice strain relaxation, absorbance, and sheet resistance on thickness in textured ZnO@B transparent conductive oxide for thin-film solar cell applications.

作者信息

Kou Kuang-Yang, Huang Yu-En, Chen Chien-Hsun, Feng Shih-Wei

机构信息

Department of Traffic Science, Central Police University, Taoyuan, Taiwan.

Department of Applied Physics, National University of Kaohsiung, No.700 Kaohsiung University Road, Nan-Tzu Dist., 811. Kaohsiung, Taiwan.

出版信息

Beilstein J Nanotechnol. 2016 Jan 20;7:75-80. doi: 10.3762/bjnano.7.9. eCollection 2016.

Abstract

The interplay of surface texture, strain relaxation, absorbance, grain size, and sheet resistance in textured, boron-doped ZnO (ZnO@B), transparent conductive oxide (TCO) materials of different thicknesses used for thin film, solar cell applications is investigated. The residual strain induced by the lattice mismatch and the difference in the thermal expansion coefficient for thicker ZnO@B is relaxed, leading to an increased surface texture, stronger absorbance, larger grain size, and lower sheet resistance. These experimental results reveal the optical and material characteristics of the TCO layer, which could be useful for enhancing the performance of solar cells through an optimized TCO layer.

摘要

研究了用于薄膜太阳能电池应用的不同厚度的织构化硼掺杂氧化锌(ZnO@B)透明导电氧化物(TCO)材料中表面纹理、应变弛豫、吸光度、晶粒尺寸和薄层电阻之间的相互作用。较厚的ZnO@B由于晶格失配和热膨胀系数差异引起的残余应变得到弛豫,导致表面纹理增加、吸光度增强、晶粒尺寸增大以及薄层电阻降低。这些实验结果揭示了TCO层的光学和材料特性,这对于通过优化TCO层来提高太阳能电池的性能可能是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41ed/4734349/9eb0b5308571/Beilstein_J_Nanotechnol-07-75-g002.jpg

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