Synthesis and Characterization of Pure and Magnesium (Mg) Doped CuO Nano Particles by Solid State Method

K. Thangavel, K. Jayasree, V. Balaprakash, P. Gowrisankar, S. Sudha, E. Murugan
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引用次数: 0

Abstract

Pure and Magnesium (Mg) doped CuO nanoparticles were effectively prepared by solid state method using Copper Chloride (CuCl2 · 2H2O), Magnesium Chloride (MgCl2 · 6H2O) and Sodium Hydroxide (NaOH). The ITO/TiO2/CuO–M/Cu heterojunctions solutions were fabricated by Dr Blade method at a low reaction temperature of 400 °C. In this analysis the prepared nanostructure were exposed to structural, morphological and optical analysis. The X-ray diffraction peaks results divulged that the prepared nanoparticles are monoclinic structure of CuO which was evidenced from the JCPDS card No. 801916. Morphological analysis result exposed that pure CuO particles exclusively consist of agglomerated irregular spherical shape. The result of the elemental analysis confirmed the presence of Mg2+ in the doped samples. Fourier Transform Infra-Red Spectroscopy results reveals the structural modifications due to the presence of magnesium. Optical absorption measurement spectra demonstrates that band gap shift is due the proportion of Mg.
纯CuO及掺镁纳米粒子的固相合成与表征
以氯化铜(CuCl2·2H2O)、氯化镁(MgCl2·6H2O)和氢氧化钠(NaOH)为原料,采用固相法制备了纯CuO纳米颗粒和镁掺杂CuO纳米颗粒。采用Dr . Blade法在400℃的低温下制备了ITO/TiO2/ CuO-M /Cu异质结溶液。对制备的纳米结构进行了结构、形态和光学分析。x射线衍射峰结果表明,所制备的纳米颗粒为单斜晶型CuO结构,这一点得到了JCPDS卡片801916的证明。形态学分析结果表明,纯氧化铜颗粒完全由不规则球形凝聚体组成。元素分析结果证实了掺杂样品中存在Mg2+。傅里叶变换红外光谱结果揭示了由于镁的存在而引起的结构修饰。光吸收测量光谱表明,带隙位移是由Mg的比例引起的。
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来源期刊
Sensor Letters
Sensor Letters 工程技术-电化学
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: The growing interest and activity in the field of sensor technologies requires a forum for rapid dissemination of important results: Sensor Letters is that forum. Sensor Letters offers scientists, engineers and medical experts timely, peer-reviewed research on sensor science and technology of the highest quality. Sensor Letters publish original rapid communications, full papers and timely state-of-the-art reviews encompassing the fundamental and applied research on sensor science and technology in all fields of science, engineering, and medicine. Highest priority will be given to short communications reporting important new scientific and technological findings.
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