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首页> 外文期刊>Journal of materials science >Emission and opto-dielectric nonlinearity in 2D Cd-ZnO-Na nanostructures: an effect of Na doping
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Emission and opto-dielectric nonlinearity in 2D Cd-ZnO-Na nanostructures: an effect of Na doping

机译:2D CD-ZnO-Na纳米结构中的发射和光电介电非线性:Na掺杂的效果

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摘要

Cd-ZnO-Na alloy nanostructured thin films were synthesized via sol-gel spin coating method on glass substrates and the effect of Na (1, 2 and 3 wt%) doping variation on linear, nonlinear optical, opto-dielectric, and emission properties of the films was investigated. The variations in physical properties with different Na doping concentrations were analyzed using X-ray diffraction (XRD), atomic force microscope (AFM), scanning electron microscope (SEM), FT-Raman, UV-Vis, and photoluminescence spectroscopy. From XRD patterns, it was observed that the growth of the films occurs along (002) plane with hexagonal wurtzite structure. High percentage of transmittance (viz. 85 to 90%) was recorded for all as grown films. However, the estimated bandgap energy of the films was found to decrease from 3.37 to 3.30 eV with increasing Na doping concentration from 1 to 3 wt%. Emission spectra of the films show an intense and sharp peak near band emission (NBE) at 389 nm whereas a low intense peak was observed at 475 nm. The intensity of NBE peak specifies the significant enhancement in photoluminescence properties of the grown films with increasing Na doping concentrations. Nonlinear optical parameters of the Cd-ZnO-Na films such as x~3 and n_2 showed substantial improvements, which were deduced and obtained in the range 1.11× 10~(-14)-1.91× 10~(-12)esu and 5.20 × 10~(-13)-3.19× 10~(-11) esu, respectively. The achieved improvement in the grown ZnO films via co-doping with Cd and Na makes them highly suitable candidates for optoelectronics devices applications.
机译:通过玻璃基板上的溶胶 - 凝胶旋转涂布方法合成CD-ZnO-Na合金纳米结构薄膜,并对线性,非线性光学,光电电介质和排放性能的Na(1,2和3wt%)掺杂变化的影响研究了电影。使用X射线衍射(XRD),原子力显微镜(AFM),扫描电子显微镜(SEM),FT-Raman,UV-Vis和光致发光光谱分析具有不同Na掺杂浓度的物理性质的变化。从XRD图案中,观察到膜的生长沿(002)平面,具有六边形紫硝基特结构。作为生长的薄膜记录了高百分比的透射率(viz。85至90%)。然而,发现薄膜的估计带隙能量从3.37到3.30eV降低,随着Na掺杂浓度从1-3wt%的增加。薄膜的发射光谱显示在389nm的带发射(NBE)附近的强烈和尖锐的峰,而在475nm处观察到低强度峰。 NBE峰的强度指定了生长薄膜的光致发光性质的显着增强,随着Na掺杂浓度的增加。 CD-ZnO-Na膜的非线性光学参数,例如X〜3和N_2显示出实质性的改进,其推导出并获得并获得的1.11×10〜(-14)-1.91×10〜(-12)eSu和5.20 ×10〜(-13)-3.19×10〜(-11)eSU。通过共掺杂和Na通过共掺杂实现生长的ZnO膜的改善使得它们具有高度合适的光电子器件应用候选者。

著录项

  • 来源
    《Journal of materials science》 |2020年第15期|12116-12126|共11页
  • 作者单位

    Department of Physics College of Science University of Hail P.O. Box 2440 Hail Saudi Arabia;

    Department of Physics College of Science University of Hail P.O. Box 2440 Hail Saudi Arabia;

    Department of Physics College of Science University of Hail P.O. Box 2440 Hail Saudi Arabia;

    Department of Physics College of Science University of Hail P.O. Box 2440 Hail Saudi Arabia;

    Advanced Functional Materials and Optoelectronics Laboratory (AFMOL) Department of Physics Faculty of Science King Khalid University P.O. Box 9004 Abha 61413 Saudi Arabia;

    Advanced Functional Materials and Optoelectronics Laboratory (AFMOL) Department of Physics Faculty of Science King Khalid University P.O. Box 9004 Abha 61413 Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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