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Effect of citric acid on material properties of ZnGa_2O_4:Cr~(3+) nanopowder prepared by sol-gel method

机译:柠檬酸对溶胶-凝胶法制备ZnGa_2O_4:Cr〜(3+)纳米粉体材料性能的影响

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摘要

This paper reports the material properties of Cr3+ (1.0 mol%)-doped ZnGa2O4 nanopowders prepared by citric acid-assisted sol-gel method with metal cations (Zn + Ga) to citric (M:CA) molar ratios of (1:0.5, 1:1, 1:3 and 1:4). The X-ray diffraction (XRD) results show that the synthesized nanoparticles are cubic structured and concentration of citric acid did not affect the structure. The scanning electron microscope (SEM) shows that the increase of the M:CA molar ratio favors the formation of smaller nano particle of ZnGa2O4:Cr3+. The photoluminescence (PL) is found to be maximum for sample with M:CA ratio of 1:1. Further increase in citric acid leads to significant decrease in the PL intensity. Energy-dispersive X-ray spectroscopy (EDS) measurement confirms the presence of the Zn, Ga, O and Cr ions. Ultraviolet-visible (UV-Vis) spectrophotometer measurement shows an increase in reflectance in visible region and the energy band gap was found to decrease with an increase in citric acid molar ratio. The emission spectra, particle size and photoluminescence lifetimes are comparable with reports on bioimaging applications.
机译:本文报道了柠檬酸辅助溶胶-凝胶法制备的Cr3 +(1.0 mol%)掺杂的ZnGa2O4纳米粉的材料性能,金属阳离子(Zn + Ga)与柠檬酸(M:CA)的摩尔比为(1:0.5, 1:1、1:3和1:4)。 X射线衍射(XRD)结果表明,合成的纳米颗粒为立方结构,柠檬酸浓度不影响其结构。扫描电子显微镜(SEM)表明,M:CA摩尔比的增加有利于ZnGa2O4:Cr3 +纳米颗粒的形成。发现M:CA比率为1:1的样品的光致发光(PL)最大。柠檬酸的进一步增加导致PL强度的显着降低。能量色散X射线光谱(EDS)测量证实了Zn,Ga,O和Cr离子的存在。紫外可见(UV-Vis)分光光度计的测量结果表明,可见光区域的反射率增加,并且能带隙随柠檬酸摩尔比的增加而减小。发射光谱,粒径和光致发光寿命可与生物成像应用报告相媲美。

著录项

  • 来源
    《Applied Physics》 |2018年第5期|390.1-390.10|共10页
  • 作者单位

    Univ Free State, Dept Phys, Qwaqwa Campus,Private Bag X13, ZA-9866 Phuthaditjhaba, South Africa;

    Univ Free State, Dept Phys, Qwaqwa Campus,Private Bag X13, ZA-9866 Phuthaditjhaba, South Africa;

    Dire Dawa Univ, Dept Phys, POB 1362, Dire Dawa, Ethiopia;

  • 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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