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The optical and structural properties of ZnO:Mn nano films grown by sol-gel

机译:溶胶凝胶法制备ZnO:Mn纳米薄膜的光学和结构性质

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There are many techniques used to deposit high-quality ZnO thin films. One of these based on chemical method for the production of ZnO thin films is the sol-gel. ZnO:Mn nano films doped with manganese different concentrations were deposited on glass substrates by the spin-coating method. The precursors for the synthesis ZnO:Mn are: Zinc acetate dehydrate, manganese acetate dehydrate, 2-mithoxyethanol and monoethanolamine as zinc and manganese source, solvent and stabilizer respectively. Seven samples of diluted magnetic semiconductors ZnO:Mn were prepared with different atomic ratio Mn/Zn. Characterization techniques of XRD, EDX and UV-visible spectra measurements were done to investigate the effects of Mn doping concentration on the optical and structural properties of ZnO-.Mn nano films. The XRD patterns of all nano films show the crystallization behavior and are hexagonal wurtzite structure for different x, without existing other phases. Our results reveal that with high percent manganese not only the degree of crystalline decreases but also peak broadening occurs. The compositional analysis was carried out by energy dispersive X-ray (EDX) measurement. Compositional analysis shows 0.00, 0.01, 0.018, 0,029, 0.041, 0.05 and 0.059 Mn/Zn ratios in samples. The optical studies show that the band gap of ZnO:Mn decreases for smaller x than 0.03 from 3.3 to 3.26 because there are a strong interaction between localized moments of the d electrons of Mn atom and band carriers of host material, and increases for higher x than 0.03 because of the structural changes of the material.
机译:有许多技术可用于沉积高质量的ZnO薄膜。溶胶-凝胶是基于化学方法生产ZnO薄膜的方法之一。通过旋涂法在玻璃基板上沉积了掺杂不同浓度锰的ZnO:Mn纳米薄膜。合成ZnO:Mn的前体是:醋酸锌脱水,醋酸锰脱水,2-甲氧基乙醇和单乙醇胺作为锌和锰源,溶剂和稳定剂。制备了七个具有不同原子比Mn / Zn的稀磁半导体ZnO:Mn样品。进行了XRD,EDX和紫外-可见光谱测量的表征技术,以研究Mn掺杂浓度对ZnO-.Mn纳米薄膜的光学和结构性能的影响。所有纳米膜的XRD图谱均显示出结晶行为,并且对于不同的x均为六方纤锌矿结构,而没有其他相。我们的结果表明,锰含量高时,不仅结晶度降低,而且还会出现峰展宽。通过能量色散X射线(EDX)测量进行组成分析。成分分析显示样品中的Mn / Zn比为0.00、0.01、0.018、0.029、0.041、0.05和0.059。光学研究表明,ZnO:Mn的带隙在x小于0.03时从3.3减小到3.26,这是因为Mn原子的d电子的局部矩与主体材料的带载子之间存在强相互作用,而x增大时,ZnO:Mn的带隙增加由于材料的结构变化,其值大于0.03。

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