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Electrical and optical properties of doped and undoped zinc oxide powders.

机译:掺杂和未掺杂的氧化锌粉末的电学和光学特性。

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摘要

The effects on the diffuse reflectance spectra of ZnO powders by mechanical grinding and by heat treatment were investigated. Diffuse optical reflectance of the powders was measured over near-ultraviolet and visible wavelengths from 350 to 700 nm. An optical absorption band with its center at 400 nm was observed as the result of mechanical grinding. The magnitude of the 400 nm band in the ground ZnO powder was partially reduced by annealing in oxygen. This absorption band is attributed to F{dollar}sp+{dollar} center point defects located at 0.24 eV below the conduction band edge. The decrease in the optical absorption is attributed to the reduction in the concentration of oxygen vacancies.; Optical absorption bands at 390 nm and at wavelengths longer than 400 nm were detected when the ground ZnO powder was heated in either vacuum or zinc vapor. The simultaneous formation of the 390 nm band and the suppression of the 400 nm band at low oxygen vapor pressure are interpreted to occur as the result of the pairing of oxygen vacancies with zinc interstitials. Zinc interstitial and oxygen vacancy pairs are proposed to be associated with the 390 nm band. The defect states from which the 390 nm band originate are located at 3.17 eV below the conduction band edge. The broad absorption band at wavelengths above 400 nm is suggested to be related to more complex defect clusters involving more than one zinc interstitial.; The free electron densities of ZnO powders doped with aluminum as a solid solution were characterized with diffuse infrared reflectance technique. The powders having free electron densities above 10{dollar}sp{lcub}17{rcub}{dollar} cm{dollar}sp{lcub}-1{rcub}{dollar} showed significant resistance to the formation of the 400 nm absorption band. An increase in the free electron density will thereby result in an increase in the Fermi energy of the ZnO powders. This was found to effectively suppress the electron transition which is necessary for the 400 nm optical absorption. The 390 nm absorption was found not to be affected by the presence of the Al doping.
机译:研究了机械研磨和热处理对ZnO粉体漫反射光谱的影响。在近紫外和可见光波长(350至700 nm)上测量了粉末的漫反射率。机械研磨的结果是观察到中心为400nm的光吸收带。磨碎的ZnO粉末中的400 nm带的大小通过在氧气中退火而部分降低。该吸收带归因于位于导带边缘以下0.24eV处的F {dol} sp + {dolal}中心点缺陷。光吸收的降低归因于氧空位浓度的降低。当在真空或锌蒸气中加热磨碎的ZnO粉末时,在390 nm和大于400 nm的波长处检测到光吸收带。 390nm波段的同时形成和低氧蒸气压下400nm波段的抑制被认为是由于氧空位与锌间质配对的结果。锌间隙和氧空位对建议与390 nm波段相关。 390 nm波段起源的缺陷状态位于导带边缘以下3.17 eV。波长大于400 nm的宽吸收带被认为与涉及多个锌间隙的更复杂的缺陷簇有关。用扩散红外反射技术表征了以铝为固溶体掺杂的ZnO粉末的自由电子密度。自由电子密度在10 {splar} sp {lcub} 17 {rcub} {dollar} cm {dollar} sp {lcub} -1 {rcub} {dollar}以上的粉末显示出对形成400 nm吸收带的显着抵抗力。自由电子密度的增加将因此导致ZnO粉末的费米能的增加。发现这有效地抑制了400nm光吸收所必需的电子跃迁。发现390nm的吸收不受Al掺杂的存在的影响。

著录项

  • 作者

    Rafla-Yuan, Howard Chih-Ho.;

  • 作者单位

    Alfred University.;

  • 授予单位 Alfred University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 140 p.
  • 总页数 140
  • 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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