Department of Chemistry, College of Science, King Faisal University, Al Ahsa 31982, Saudi Arabia.
Department of Chemistry, Champlain College, 900 Riverside Drive, Saint-Lambert, QC J4P 3P2, Canada.
Int J Mol Sci. 2024 Apr 8;25(7):4119. doi: 10.3390/ijms25074119.
In this study, we explored the formation of CuO nanoparticles, NiO nanoflakes, and CuO-NiO nanocomposites using saponin extract and a microwave-assisted hydrothermal method. Five green synthetic samples were prepared using aqueous saponin extract and a microwave-assisted hydrothermal procedure at 200 °C for 30 min. The samples were pristine copper oxide (100C), 75% copper oxide-25% nickel oxide (75C25N), 50% copper oxide-50% nickel oxide (50C50N), 25% copper oxide-75% nickel oxide (25C75N), and pristine nickel oxide (100N). The samples were characterized using FT-IR, XRD, XPS, SEM, and TEM. The XRD results showed that copper oxide and nickel oxide formed monoclinic and cubic phases, respectively. The morphology of the samples was useful and consisted of copper oxide nanoparticles and nickel oxide nanoflakes. XPS confirmed the +2 oxidation state of both the copper and nickel ions. Moreover, the optical bandgaps of copper oxide and nickel oxide were determined to be in the range of 1.29-1.6 eV and 3.36-3.63 eV, respectively, and the magnetic property studies showed that the synthesized samples exhibited ferromagnetic and superparamagnetic properties. In addition, the catalytic activity was tested against para-nitrophenol, demonstrating that the catalyst efficiency gradually improved in the presence of CuO. The highest rate constants were obtained for the 100C and 75C25N samples, with catalytic efficiencies of 98.7% and 78.2%, respectively, after 45 min.
在这项研究中,我们使用皂素提取物和微波辅助水热法探索了氧化铜纳米粒子、氧化镍纳米薄片和氧化铜-氧化镍纳米复合材料的形成。使用水相皂素提取物和微波辅助水热程序在 200°C 下反应 30 分钟,制备了五个绿色合成样品。这些样品分别是纯氧化铜(100C)、75%氧化铜-25%氧化镍(75C25N)、50%氧化铜-50%氧化镍(50C50N)、25%氧化铜-75%氧化镍(25C75N)和纯氧化镍(100N)。使用 FT-IR、XRD、XPS、SEM 和 TEM 对样品进行了表征。XRD 结果表明氧化铜和氧化镍分别形成了单斜相和立方相。样品的形态有用,由氧化铜纳米粒子和氧化镍纳米薄片组成。XPS 证实了铜和镍离子的+2 氧化态。此外,氧化铜和氧化镍的光学带隙分别确定为 1.29-1.6 eV 和 3.36-3.63 eV,磁性研究表明合成的样品表现出铁磁性和超顺磁性。此外,还对邻硝基苯酚进行了催化活性测试,表明在存在氧化铜的情况下,催化剂效率逐渐提高。在 45 分钟后,100C 和 75C25N 样品的速率常数最高,催化效率分别为 98.7%和 78.2%。