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Optical, photoluminescence and ferromagnetic properties of Ni-doped ZnO for optoelectronic applications

机译:光电应用Ni掺杂ZnO的光学,光致发光和铁磁性性能

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摘要

The current work presents the optical, photoluminescence and ferromagnetic properties of Zn_(1-x)Ni_xO samples with (0.00 ≤ x ≤ 0.20). The samples are well crystallizing in hexagonal wurtzite structure without a significant change in their lattice constants, while the crystallite size, grain size and number of unit cells in ZnO particle are increased. The residual stress is negative (compressive) and almost increases as Ni increases up to 0.10, but it is changed from negative to positive (tensile) at Ni = 0.20. The absorption and reflectance of UV spectra are increased as Ni increases up to 0.20. An absorption band centered at a wavelength of 552 nm is also observed and is gradually shifted by Ni towards longer wavelengths. Interestingly, two direct electronic transitions are found for all samples and two induced bandgaps which are decreased by Ni. While the other optical constants such as linear x~1 and non-linear third-order susceptibilities x~3, dispersion parameters (E_d, E_o), refractive indexes (n_o, n_2), lattice dielectric constant ε_L, N/m*, optical and electrical conductivities (σ_(opt),σ_(ele)) are increased by Ni, the dissipation factor (tanδ) is decreased. Although some of the continuous peaks of lower PL intensities are recorded at UV band edges and slightly shifted to longer wave lengths (red shift) as Ni increases, strong UV emission peaks at about 390, 420 and 440 nm are recorded. Finally, the signature of a clear weak ferromagnetism ordering at room temperature, with evaluated magnetic parameters such as magnetization M_s, magnetic moments μ and magneto-crystalline anisotropy factor γ, is recorded for Ni ≥ 0.05 doped samples.
机译:目前的工作介绍了Zn_(1-x)Ni_xo样品的光学,光致发光和铁磁性性质(0.00≤x≤0.20)。样品在六边形紫立岩结构中良好地结晶,无晶格常数的显着变化,而ZnO颗粒中的微晶尺寸,晶粒尺寸和单位细胞数量增加。残留应力是负(压缩的),并且随着Ni的增加几乎增加,但是在Ni = 0.20时从负至正(拉伸)变化。随着Ni增加到0.20,UV光谱的吸收和反射率增加。还观察到以552nm的波长为中心的吸收带,并且通过Ni朝向较长波长逐渐移动。有趣的是,对所有样品和两个诱导的带隙发现了两个直接电子转换,这两个诱导的带隙由Ni降低。虽然其他光学常数如线性x〜1和非线性三阶敏感性x〜3,色散参数(e_d,e_o),折射率(n_o,n_2),晶格介电常数ε_l,n / m *,光学通过Ni增加,电导率(Σ_(opt),σ_(ELE))增加,耗散因子(Tanδ)降低。尽管在UV带边缘记录下PL强度的一些连续峰,但随着Ni的增加,稍微偏移到较长的波长(红色移位),记录大约390,420和440nm的强UV发射峰。最后,在室温下且具有评估的磁性参数如磁化M_S,磁矩μ和磁晶各向异性因子γ的签名,记录了Ni≥0.05掺杂样品。

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  • 来源
    《Journal of materials science 》 |2021年第4期| 5186-5198| 共13页
  • 作者单位

    Department of Physics College of Science University of Hail P.O. Box 2440 Hail Saudi Arabia Department of Physics Faculty of Science Assiut University Assiut 71516 Egypt;

    Department of Physics Faculty of Science Assiut University Assiut 71516 Egypt;

    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;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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