Structural Analysis and Adsorption Studies of (PbO, MgO) Metal Oxide Nanocomposites for Efficient Methylene Blue Dye Removal from Water

材料科学 纳米颗粒 微晶 正交晶系 高分辨率透射电子显微镜 纳米复合材料 氧化物 带隙 化学工程 亚甲蓝 吸附 降水 晶体结构 复合材料 纳米技术 透射电子显微镜 结晶学 光催化 物理化学 冶金 有机化学 化学 催化作用 光电子学 气象学 工程类 物理
作者
Saloua Helali,M. Rashad,Anouar Ben Mabrouk,Munirah A. A. Alanazi,Manahil SidAhmed Mustafa
出处
期刊:Materials [MDPI AG]
卷期号:17 (12): 2890-2890 被引量:2
标识
DOI:10.3390/ma17122890
摘要

In the present work, magnesium oxide (MgO) and lead oxide (PbO) nanoparticles were prepared by the co-precipitation method. Their structural parameters and morphology were investigated using XRD, HRTEM, and FTIR. The formation of the phases was seen to have small average crystallite sizes and an orthorhombic crystal structure for both MgO and PbO nanoparticles. The results of HR-TEM showed irregularly shaped nanoparticles: quasi-spherical or rod-like shapes and spherical-like shapes for MgO and PbO nanoparticles, respectively. The produced nanoparticles’ size using X-ray diffraction analysis was found to be 17 nm and 41 nm for MgO and PbO nanoparticles, respectively. On the other hand, it was observed from the calculations that the optical band gap obeys an indirect allowed transition. The calculated values of the band gap were 4.52 and 4.28 eV for MgO and PbO NPs, respectively. The MB was extracted from the wastewater using the prepared composites via absorption. Using a variety of kinetic models, the adsorptions were examined. Out of all the particles, it was discovered that the composites were best. Furthermore, of the models currently under consideration, the pseudo-second-order model best fit the degradation mechanism. The resultant composites could be beneficial for degrading specific organic dyes for water purification, as well as applications needing a wider optical band gap.

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