利用商品蜂蜜合成绿色纳米粒子的生物制造与表征

Najla Ali Alburae
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引用次数: 0

摘要

纳米粒子合成的绿色方法提供了可持续和环保的替代方法,避免了传统方法中常见的有害化学物质。本研究以商品蜂蜜为还原剂和封端剂,对硝酸银(AgNO3)和氧化铁(Fe2O3)合成的纳米粒子(NPs)进行了表征。表征结果表明,银纳米粒子(AgNPs)和铁纳米粒子(FeNPs)之间存在显著差异。与铁纳米粒子(Z-平均值:1813 nm)相比,银纳米粒子的粒径更大(Z-平均值:3115.67 nm)。AgNPs 呈单分散群,而 FeNPs 的粒度分布稍宽。此外,AgNPs 的颗粒浓度(平均计数率:505.17 kcps)高于 FeNPs(平均计数率:296.65 kcps)。AgNPs 和 FeNPs 的表面电荷均为负值,分别为 -6.499 mV 和 -1.652 mV,其中 FeNPs 的表面电荷值稍高。通过扫描电子显微镜-能量色散 X 射线(SEM-EDX)进行的元素组成分析表明,AgNPs 主要由银、碳和氧组成,而 FeNPs 主要由铁、氧和碳组成。这些发现有助于深入了解使用商业蜂蜜合成的 AgNPs 和 FeNPs 的物理和化学特性。了解这些性质对于优化合成工艺以及探索在医药、催化和环境修复方面的应用至关重要。使用蜂蜜的生态友好型合成方法强调了可持续纳米材料生产的潜力。进一步的研究可以探索通过这种绿色方法合成的 AgNPs 和 FeNPs 的具体应用和益处,为纳米粒子合成提供一种高效、经济的替代方法。
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Bio-fabrication and Characterization of Green Synthesized Nanoparticles from Commercial Honey
Green approaches to nanoparticle synthesis offer sustainable and environmentally friendly alternatives, avoiding hazardous chemicals typical in traditional methods. This study characterizes nanoparticles (NPs) synthesized from silver nitrate (AgNO3) and iron oxide (Fe2O3) using commercial honey as a reducing and capping agent. Characterization revealed significant disparities between silver NPs (AgNPs) and iron NPs (FeNPs). AgNPs had a larger particle size (Z-average: 3115.67 nm) compared to FeNPs (Z-average: 1813 nm). AgNPs showed a monodisperse population, while FeNPs had a slightly broader size distribution. Additionally, AgNPs had a higher particle concentration (mean count rate: 505.17 kcps) than FeNPs (mean count rate: 296.65 kcps). Both AgNPs and FeNPs displayed negative surface charges, at -6.499 mV and -1.652 mV, respectively, where FeNPs exhibit a slightly higher value. Elemental composition analysis by scanning electron microscope – energy dispersive X-ray (SEM-EDX) revealed that AgNPs are primarily composed of silver, carbon, and oxygen, whereas FeNPs consisted mainly of iron, oxygen, and carbon. These findings provide insights into the physical and chemical properties of AgNPs and FeNPs synthesized using commercial honey. Understanding these properties is essential for optimizing synthesis processes and exploring applications in medicine, catalysis, and environmental remediation. The eco-friendly synthesis approach using honey underscores the potential for sustainable nanomaterial production. Further research can explore specific applications and benefits of AgNPs and FeNPs synthesized through this green method, offering an efficient and economical alternative for nanoparticle synthesis.
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