Mbarek Fatma, Chérif Ichraf, Chérif Amira, Alonso José María, Morales Irene, de la Presa Patricia, Ammar Salah
Electrochemistry, Materials and Environment Research Unit, UREME (UR17ES45), Faculty of Sciences of Gabes, University of Gabes, Gabes 6072, Tunisia.
Higher Institute of Education and Continuous Training of Tunis, Virtual University of Tunis, Tunis 1073, Tunisia.
Materials (Basel). 2023 Apr 27;16(9):3426. doi: 10.3390/ma16093426.
The present study aims at the integration of the "oxalic conversion" route into "green chemistry" for the synthesis of copper oxide nanoparticles (CuO-NPs) with controllable structural, morphological, and magnetic properties. Two oxalate-containing precursors (HCO.2HO and (NH)CO.HO) and different volume ratios of a mixed water/glycerol solvent were tested. First, the copper oxalates were synthesized and then subjected to thermal decomposition in air at 400 °C to produce the CuO powders. The purity of the samples was confirmed by X-ray powder diffraction (XRPD), and the crystallite sizes were calculated using the Scherrer method. The transmission electron microscopy (TEM) images revealed oval-shaped CuO-NPs, and the scanning electron microscopy (SEM) showed that morphological features of copper oxalate precursors and their corresponding oxides were affected by the glycerol (/) ratio as well as the type of CO starting material. The magnetic properties of CuO-NPs were determined by measuring the temperature-dependent magnetization and the hysteresis curves at 5 and 300 K. The obtained results indicate the simultaneous coexistence of dominant antiferromagnetic and weak ferromagnetic behavior.
本研究旨在将“草酸转化”路线融入“绿色化学”,以合成具有可控结构、形态和磁性的氧化铜纳米颗粒(CuO-NPs)。测试了两种含草酸盐的前驱体(HCO·2HO和(NH)CO·HO)以及不同体积比的水/甘油混合溶剂。首先,合成草酸铜,然后在空气中于400℃进行热分解以制备CuO粉末。通过X射线粉末衍射(XRPD)确认样品的纯度,并使用谢乐方法计算微晶尺寸。透射电子显微镜(TEM)图像显示为椭圆形的CuO-NPs,扫描电子显微镜(SEM)表明草酸铜前驱体及其相应氧化物的形态特征受甘油(/)比例以及CO起始原料类型的影响。通过测量5K和300K下随温度变化的磁化强度和磁滞曲线来确定CuO-NPs的磁性。所得结果表明主要的反铁磁行为和弱铁磁行为同时共存。