S. Johnson Jeyakumar, R. Piriyadharsini, M. Jothibas
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引用次数: 0
摘要
目前,植物化学方法被认为是最有效和最环保的选择,因为它们在纳米结构的形成中起着不同的作用。本研究以香橼叶提取物为原料合成氧化锌纳米颗粒。采用XRD、FTIR、XPS、PL、UV-Vis、SEM (EDX)和HRTEM (EDX)对合成的样品进行了表征。随着叶提取物含量的增加,ZnO纳米粒子的平均晶粒尺寸从16.4 nm减小到12.7 nm。FT-IR研究为各种生物分子对样品表面的贡献和Zn-O键的形成提供了保证。SEM和HRTEM研究表明,20 mL ZnO NPs具有高均匀性的纳米棒状形貌。此外,XPS的表面化学态分析证实了不同氧配位分子种的调节作用。亚甲基橙和亚甲基紫有机染料的染料降解率分别为99%和98%。这些结果是通过在阳光照射下使用生物纳米棒催化剂60分钟获得的。研究结果表明,在良好的环境条件下,纳米ZnO光降解MO染料溶液是有效的。基于目前的研究,生物介导的ZnO NPs适用于水生环境净化。
An Investigation into the Dynamic Photocatalytic Degradation of Organic Pollutants in Sunlight Exposure with ZnO Nanoparticles Synthesized Using a Green Approach
Currently, phytochemical approaches to metal oxide nanoparticles (NPs) are regarded as the most effective and environmentally benign option due to the varied roles in the formation of nanostructures. This study focused on synthesizing zinc oxide nanoparticles from Citron leaf extract. The synthesized samples were evaluated by XRD, FTIR, XPS, PL, UV-Vis, SEM with EDX, and HRTEM with EDX, respectively. As the leaf extract increases, the structure analysis shows that the ZnO NPs have the average size of the crystallites which decreases from 16.4 to 12.7 nm. The FT-IR study provides assurance about the contribution of various biomolecules to the sample surface and the formation of Zn–O bonding. SEM and HRTEM investigations revealed nanorod-shaped morphology with high particle homogeneity from the 20 mL ZnO NPs. Furthermore, surface chemical state analyses by XPS verified the accommodation of different oxygen-coordinated molecular species. The dye degradation rates of methylene orange and methylene violet organic dyes were found to be 99% and 98%, respectively. These outcomes were attained by using a bio nano-rod catalyst for 60 min under sun light irradiation. According to the findings, the photodegradation of MO dye solution by ZnO nanoparticles via an ecologically benign approach under favorable conditions was effective. Based on the present study, the application of bio-mediated ZnO NPs is suitable for aquatic environmental purification.
期刊介绍:
Presents the latest results from Russia’s leading researchers in condensed matter physics at the Russian Academy of Sciences and other prestigious institutions. Covers all areas of solid state physics including solid state optics, solid state acoustics, electronic and vibrational spectra, phase transitions, ferroelectricity, magnetism, and superconductivity. Also presents review papers on the most important problems in solid state physics.