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Structural,optical,and electrical properties of Cu-doped ZrO2 films prepared by magnetron co-sputtering

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【作者】 姚念琦刘智超顾广瑞吴宝嘉

【Author】 Nian-Qi Yao;Zhi-Chao Liu;Guang-Rui Gu;Bao-Jia Wu;Department of Physics, College of Science, Yanbian University;

【机构】 Department of Physics, College of Science, Yanbian University

【摘要】 Copper(Cu)-doped ZrO2(CZO) films with different Cu content(0 at.%~ 8.07 at.%) are successfully deposited on Si(100) substrates by direct current(DC) and radio frequency(RF) magnetron co-sputtering. The influences of Cu content on structural, morphological, optical and electrical properties of CZO films are discussed in detail. The CZO films exhibit ZrO2 monocline(ˉ111) preferred orientation, which indicates that Cu atoms are doped in ZrO2 host lattice. The crystallite size estimated form x-ray diffraction(XRD) increases by Cu doping, which accords with the result observed from the scanning electron microscope(SEM). The electrical resistivity decreases from 2.63 ?.cm to 1.48 ?·cm with Cu doping content increasing, which indicates that the conductivity of CZO film is improved. However, the visible light transmittances decrease slightly by Cu doping and the optical band gap values decrease from 4.64 eV to 4.48 eV for CZO films.

【Abstract】 Copper(Cu)-doped ZrO2(CZO) films with different Cu content(0 at.%~ 8.07 at.%) are successfully deposited on Si(100) substrates by direct current(DC) and radio frequency(RF) magnetron co-sputtering. The influences of Cu content on structural, morphological, optical and electrical properties of CZO films are discussed in detail. The CZO films exhibit ZrO2 monocline(111) preferred orientation, which indicates that Cu atoms are doped in ZrO2 host lattice. The crystallite size estimated form x-ray diffraction(XRD) increases by Cu doping, which accords with the result observed from the scanning electron microscope(SEM). The electrical resistivity decreases from 2.63 ?.cm to 1.48 ?·cm with Cu doping content increasing, which indicates that the conductivity of CZO film is improved. However, the visible light transmittances decrease slightly by Cu doping and the optical band gap values decrease from 4.64 eV to 4.48 eV for CZO films.

【基金】 supported by the National Natural Science Foundation of China(Grant Nos.51272224 and 11164031)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2017年10期
  • 【分类号】O484
  • 【被引频次】2
  • 【下载频次】23
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