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首页> 外文期刊>Journal of Materials Science >Investigating the role of different reducing agents, molar ratios, and synthesis medium over the formation of ZnO nanostructures and their photo-catalytic activity
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Investigating the role of different reducing agents, molar ratios, and synthesis medium over the formation of ZnO nanostructures and their photo-catalytic activity

机译:研究不同还原剂,摩尔比和合成培养基在ZnO纳米结构的形成及其光催化活性的作用

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摘要

ZnO nanostructures with divergent morphologies were synthesized by a facile chemical approach using various solvents and reducing agents. The synthesized nanostructures were characterized by XRD, electron microscopic techniques and fluorescence spectroscopy. The microstructural analysis shows that different morphologies of ZnO can be formed when suitable reducing agents (RAs) and solvents are used with variation in the molar ratio (beta) of zinc precursor to RAs. The morphologies observed are spindles, flowers, nanoassemblies, rods and hexagonal hollow tubes. The size of spindle-shaped ZnO nanostructures varies from 1 to 5 mu m, and nanoassemblies are of around 150 +/- 20 nm. Each nanoassembly is the aggregation of individual nanoparticles of sizes around 4-5 nm. The optical study shows that these ZnO nanostructures have various defect concentrations and surface properties. Furthermore, the alterations and transformations in the physical and chemical properties of ZnO nanostructures significantly influenced the photo-catalytic degradation of methylene blue (MB) dye under solar irradiation. A complete degradation of MB is observed within 130 and 60 min when treated with ZnO of suitable morphology under UV and solar light radiation. This variation in time may be attributed to the availability of higher specific surface area, large amount of defects and anisotropy in morphology.
机译:通过使用各种溶剂和还原剂的容易化学方法合成具有发散形态的ZnO纳米结构。合成的纳米结构的特征在于XRD,电子显微镜技术和荧光光谱。微观结构分析表明,当合适的还原剂(Ras)和溶剂与Ras的摩尔比(β)的变化使用时,可以形成ZnO的不同形态。观察到的形态是主轴,花,纳米组织,棒和六边形中空管。主轴形ZnO纳米结构的尺寸从1-5μm变化,纳米嵌和约颗粒约为150 +/-20nm。每个纳米组件是尺寸约为4-5nm的单个纳米颗粒的聚集。光学研究表明,这些ZnO纳米结构具有各种缺陷浓度和表面性质。此外,ZnO纳米结构的物理和化学性质的改变和转化显着影响了太阳照射下亚甲基蓝(MB)染料的光催化降解。在UV和太阳光辐射下用合适的形态处理时,在130和60分钟内完成Mb的完全降解。这种变化可以归因于更高的比表面积,大量缺陷和形态各向异性的可用性。

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