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Effect of Mg and Cu doping on structural, optical, electronic, and thermal properties of ZnS quantum dots

机译:Mg和Cu掺杂对ZnS量子点结构,光学,电子和热性能的影响

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摘要

Undoped and 10% Mg or Cu-doped ZnS quantum dots (Zn_(0.9)Mg_(0.1)S and Zn_(0.9)Cu_(0.1)S) were prepared by a simple chemical method at low temperature (300 °C). The effect of doping on structural characteristics was investigated using Rietveld profile method and the high-resolution transmission electron microscope techniques. Differential scanning calorimetry (DSC) scans were recorded in the temperature range 23-600 °C with different heating rates (5 to 30 °C/min). The model-free isoconversional method was applied to explore the effect of doping on the reaction and the growth mechanism of nano-ZnS. Diffuse UV reflectance revealed an increase of the optical energy gap upon doping with Mg, while it decreased as ZnS was doped with Cu. The change in energy gap upon doping was explained using density function theory calculation. The photoluminescence (PL) spectra revealed violet, blue, green colors depended on the composition and excitation wavelength used in the study. The intensity of PL has been increased for doped samples compared with pristine ZnS. Tuning the energy gap of ZnS through doping enable applications for light-harvesting and photocatalytic degradation in the visible region.
机译:通过在低温(300℃)下,通过简单的化学方法制备未掺杂和10%Mg或Cu掺杂的ZnS量子点(Zn_(0.9)Mg_(0.1)和Zn_(0.1)Cu_(0.1))。利用RIETVELD型材方法和高分辨率透射电子显微镜技术研究了掺杂对结构特征的影响。差分扫描量热法(DSC)扫描在23-600°C的温度范围内记录不同的加热速率(5至30°C / min)。施用无型非型异电剂方法以探讨掺杂对纳米ZnS的反应和生长机制的影响。扩散UV反射率揭示了用Mg掺杂时的光学能隙的增加,而随着ZnS掺杂Cu,它降低。利用密度函数理论计算解释了掺杂时的能隙的变化。光致发光(PL)光谱透露紫色,蓝色,绿色依赖于研究中使用的组成和激发波长。与原始ZnS相比,掺杂样品增加了PL的强度。通过掺杂调节ZnS的能隙,使得可见区域中的光收获和光催化降解的应用。

著录项

  • 来源
    《Journal of materials science》 |2020年第23期|21342-21354|共13页
  • 作者单位

    X-ray Diffraction and Crystal Structural Unit Faculty of Science Ain Shams University Cairo Egypt Physics Department Faculty of Science Ain Shams University Cairo Egypt;

    Physics Department Faculty of Science Taibah University Al-Madinah Al-Munawara Saudi Arabia Physics Department Faculty of Science Ain Shams University Cairo Egypt;

    Physics & Astronomy Department College of Science King Saud University P.O. Box 2455 Riyadh 11451 Saudi Arabia Physics Department Faculty of Science Ain Shams University Cairo Egypt;

    Physics & Astronomy Department College of Science King Saud University P.O. Box 2455 Riyadh 11451 Saudi Arabia K.A.CARE Energy Research and Innovation Center at Riyadh Riyadh 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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