Rani Neha, Chahal Surjeet, Mahadevan Santhosh Kumar, Kumar Parmod, Shukla Rajni, Singh S K
Department of Physics, Deenbandhu Chhotu Ram University of Science and Technology, Murthal, Sonepat, Haryana 131039, India.
Nanotechnology. 2020 Sep 11;31(37):374004. doi: 10.1088/1361-6528/ab96e8. Epub 2020 May 27.
A facile strategy was introduced for the development of pure MgO and its nanocomposites using different CeO contents (3%-7%) to enhance their magnetic properties and photocatalytic performance. Different morphologies (namely nanoflowers and rhombohedral type nanostructures) were obtained using an in situ hydrothermal method at different concentrations of CeO. X-ray diffraction results revealed that peaks of CeO were observed along with peaks of MgO, which confirms the presence of both phases. The crystallite size and particle size were found to increase with changing CeO content in the host matrix of MgO. Moreover, the band gap reduces while the magnetic character increases with CeO content. The magnetic behaviour of the nanocomposites was elucidated on the basis of oxygen intrinsic defects, which are shown through XPS. EPR measurements were carried out to understand the valence electrons and establish the defects present in the material, which are related to the size of the nanostructures. The degradation of Rose Bengal dye was performed to probe the photocatalytic activity of the MgO@CeO nanocomposites. Hence the facile synthesis of these nanostructures conveyed good magnetic properties along with its application towards dye degradation.
介绍了一种简便的策略,用于制备纯氧化镁及其纳米复合材料,该复合材料使用不同含量(3%-7%)的CeO来增强其磁性和光催化性能。在不同浓度的CeO条件下,采用原位水热法获得了不同的形貌(即纳米花和菱面体型纳米结构)。X射线衍射结果表明,在MgO的峰旁边观察到了CeO的峰,这证实了两相的存在。发现在MgO主体基质中,随着CeO含量的变化,微晶尺寸和颗粒尺寸增大。此外,随着CeO含量的增加,带隙减小而磁性增强。基于氧本征缺陷对纳米复合材料的磁性行为进行了阐释,这通过XPS得以体现。进行了电子顺磁共振测量,以了解价电子并确定材料中存在的缺陷,这些缺陷与纳米结构的尺寸有关。进行了孟加拉玫瑰红染料的降解实验,以探究MgO@CeO纳米复合材料的光催化活性。因此,这些纳米结构的简便合成方法赋予了良好的磁性,并使其在染料降解方面具有应用价值。