首页> 外文期刊>Physica, B. Condensed Matter >Investigative study of Mn2+ concentration on the structure, morphology and photoluminescence of sol-gel ZnAl2O4/ZnO/SrAl2O4/Sr3Al2O6 mixed phase nanophosphor
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Investigative study of Mn2+ concentration on the structure, morphology and photoluminescence of sol-gel ZnAl2O4/ZnO/SrAl2O4/Sr3Al2O6 mixed phase nanophosphor

机译:Mn2 +浓度对溶胶 - 凝胶Znal2O4 / ZnO /Srα/ sr3Al2O6混合相纳米磷的结构,形态学和光致发光的研究研究

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摘要

The sol-gel technique was used to synthesize mixed phases of ZnAl2O4/ZnO/SrAl2O4/Sr3Al2O6 (ZZSS) nanophosphors. The study investigated the effect of varying the Mn2+ doping concentration on the structural, morphological and optical properties of the prepared phosphor materials. X-ray diffraction (XRD) patterns revealed that the structure of the un-doped ZZSS powder was not influenced by varying the Mn2+ concentration. Scanning electron microscopy (SEM) images showed that the morphological features of the prepared nanophosphors were influenced by the Mn2+ concentration. Transmission electron microscopy (TEM) confirmed that the prepared materials are on the nanoscale. Ultraviolet-visible (UV-vis) diffuse reflection spectroscopy showed that the band gap energy can be tuned in the range 4.78-4.92 eV. The photoluminescence (PL) results showed that the un-doped ZZSS exhibited an emission peak at 580 nm when excited at 374 nm, which is attributed to the defect centres within the ZnAl2O4 and ZnO. The doped samples showed broad emission bands at 600 nm, which were attributed to the T-4(1g)(G) -> (6)A(1g)(S) transitions of Mn2+ ions. The Commission International de I'Eclairage (CIE) chromaticity colour coordinates showed that the emission colour of the prepared phosphors can be tuned from yellow to orange by varying the Mn2+ concentration.
机译:溶胶 - 凝胶技术用于合成ZNAL2O4 / ZnO / SRAL2O4 / SR3AL2O6(ZZSS)纳米膦酰基的混合相。该研究研究了改变Mn2 +掺杂浓度对制备的磷光体材料的结构,形态学和光学性质的影响。 X射线衍射(XRD)图案显示未掺杂的ZZSS粉末的结构不通过改变MN2 +浓度来影响。扫描电子显微镜(SEM)图像显示,制备的纳米膦的形态学特征受Mn2 +浓度的影响。透射电子显微镜(TEM)证实制备的材料在纳米级上。紫外 - 可见(UV-VI)漫反射光谱显示,带隙能量可以在4.78-4.92eV的范围内进行调谐。光致发光(PL)结果表明,在374nm的激发时,未掺杂的ZZS在580nm处表现出580nm的发射峰,其归因于ZNAL2O4和ZnO内的缺陷中心。掺杂样品在600nm处显示出宽的发射带,其归因于Mn 2 +离子的T-4(G) - >(6)A(1g)转变。委员会International de i'Eclairage(CIE)色度颜色坐标表明,通过改变Mn2 +浓度,可以从黄色至橙色调谐制备磷光体的发光颜色。

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