Facile Chemical Synthesis of Cadmium and Neodymium doped Copper Chromite by Sol gel Method

K. Batool, A. Mehmood, A. Ahmad Shah, A. Chandio, F. Batool, R. Shafique, N. Akhter, Tahira Yaqoob
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引用次数: 2

Abstract

Using a simple and inexpensive sol-gel synthesis technique, Nd and Cd doped copper chromite spinel nanoparticles (MxCu1-xCr2O4) with x=0.2, 0.4, 0.6, and 0.8 were investigated. The crystal structure, elemental composition, nanoparticles nature, and bandgap of the synthesized nanoparticles were determined using XRD, EDS, SEM, Raman spectroscopy, and Photoluminescence. As prepared calcined at 750°C for four hours, resulting in an increase in average grain size from 37nm to 41nm, as demonstrated by XRD results. XRD tells us about the crystal size and dislocation density of samples. The value of 2???? for the XRD patterns is ranging from 25 to 55 . The band gap is calculated from the PL spectra and is 4.96 eV for the parent compound. When we doped elements with different concentrations in parent compound, the value of band gap decreases to 2.43 eV for Neodymium and 2.42eV for Cadmium. Similarly, SEM results show that the structure of pure copper chromites is tetragonal, and that after doping with other compounds, the structure will change according to the characteristics of Nano particles. In the PL spectra, four peaks are obtained: one at 347nm, one at 380nm, one at 500nm, and one at 600nm.EDS demonstrated that Cadmium and Neodymium was successfully doped in copper chromite and completely merged
溶胶-凝胶法快速化学合成镉、钕掺杂铜铬铁矿
采用简单、廉价的溶胶-凝胶合成技术,制备了x=0.2、0.4、0.6和0.8的Nd和Cd掺杂铜铬铁矿尖晶石纳米粒子(MxCu1-xCr2O4)。采用XRD、EDS、SEM、拉曼光谱和光致发光等方法对合成的纳米颗粒的晶体结构、元素组成、性质和带隙进行了表征。在750℃下煅烧4小时,平均晶粒尺寸从37nm增加到41nm, XRD结果表明。XRD测定了样品的晶体尺寸和位错密度。2的值????为25 ~ 55。从PL光谱计算得到,母化合物的带隙为4.96 eV。当我们在母体化合物中掺杂不同浓度的元素时,钕的带隙值降低到2.43 eV,镉的带隙值降低到2.42eV。同样,SEM结果表明,纯铜铬铁矿的结构为四方结构,掺杂其他化合物后,结构会根据纳米颗粒的特性发生变化。在PL光谱中,得到了四个峰:一个在347nm,一个在380nm,一个在500nm,一个在600nm。能谱分析表明,镉和钕在铜铬铁矿中成功掺杂并完全融合
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