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The Green Synthesis and Evaluation of Silver Nanoparticles and Zinc Oxide Nanoparticles

机译:银纳米粒子和氧化锌纳米粒子的绿色合成与评价

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摘要

Nanoparticle (NP) research has received exceptional attention as the field of study that contributes to transforming the world of materials science. When implementing NPs in consumer and industrial products, their unique properties improve technologies to the extent of significant game-changing breakthroughs. Conversely, the increased production of NPs, their use, their disposal or inadvertent release in the environment drove the need for processes and policies that ensures consumer and environmental safety. Mitigation of any harmful effects that NPs could potentially have combines methods of safe preparation, safe handling and safe disposal as well as containment of any inadvertent release. Our focus is in safe preparation of nanomaterials and we report green and energy efficient synthesis methods for metal NPs and metal oxide NPs of two popular materials: silver (Ag) and zinc oxide (ZnO).;The thesis explained: 1) The impact of NPs in nowadays' world; 2) Synthesis methods that were designed to include environmentally-friendly staring materials and energy-saving fabrication processes, with emphasis on maintaining NPs final size and morphology when compared with existing methods; and 3) Nanoparticles characterization and data collection which allowed us to determine and/or validate their properties. Nanoparticles were studied using transmission electron microscope (TEM), X-Ray powder diffraction (XRD), low-voltage (5 keV) transmission electron microscopy (LV EM 5), Fourier-Transform Infrared Spectroscopy (FT-IR), and Ultraviolet-Visible (UV-Vis) spectroscopy.;We developed an aqueous-based preparation of zinc oxide nanoparticles (ZnO NPs) using microwave-assisted chemistry to render a well-controlled particle size distribution within each set of reaction conditions in the range of 15 nm to 75 nm.;We developed a scalable silver nanoparticles synthesis by chemical reduction methods. The NPs could be used in consumer products. The measurement tools for consumer products were also used on in-house synthesized Ag NPs.;Commercially available silver nanoparticles have been compared with the in-house synthesized ones and characterized by Photothermal Lens (PTL) Spectroscopy. In respect to particle size and morphology, the Ag NPs synthesized by chemical reduction methods are similar to Ag nanoparticle solution available in the market. However, the synthesized nanoparticles are high in concentration and do not show signs of aggregation or agglomeration. It was concluded that our Ag NPs are superior to the commercially available ones by exhibiting large concentrations in ultra-stable dispersions.
机译:纳米粒子(NP)研究已成为研究领域中的杰出关注,它有助于改变材料科学的世界。在消费品和工业产品中实施NP时,它们的独特性能将技术改进到了重大的改变游戏规则的程度。相反,NP的产量增加,其使用,处置或在环境中的无意释放导致对确保消费者和环境安全的流程和政策的需求。缓解NP可能带来的任何有害影响,将安全准备,安全处理和安全处置以及遏制任何无意释放的方法结合在一起。我们的重点是安全制备纳米材料,我们报道了绿色和节能的合成方法,用于合成两种流行的材料(银(Ag)和氧化锌(ZnO))的金属NP和金属氧化物NP。本文的解释是:1)纳米材料的影响当今世界的NP 2)旨在包括环保凝视材料和节能制造工艺的合成方法,与现有方法相比,重点在于保持NP的最终尺寸和形态; 3)纳米颗粒的表征和数据收集,使我们能够确定和/或验证其性能。使用透射电子显微镜(TEM),X射线粉末衍射(XRD),低压(5 keV)透射电子显微镜(LV EM 5),傅里叶变换红外光谱(FT-IR)和紫外线-可见光(UV-Vis)光谱;我们开发了一种水基制备的氧化锌纳米颗粒(ZnO NPs),使用微波辅助化学处理以在15 nm范围内的每组反应条件下提供可控的粒径分布到75 nm。;我们通过化学还原方法开发了可扩展的银纳米颗粒合成方法。 NP可用于消费产品。消费类产品的测量工具也用于内部合成的Ag NP。;商业上可获得的银纳米粒子已与内部合成的纳米银进行了比较,并通过光热透镜(PTL)光谱进行了表征。关于粒度和形态,通过化学还原方法合成的Ag NP类似于市场上可买到的Ag纳米颗粒溶液。然而,合成的纳米颗粒浓度高并且没有显示聚集或附聚的迹象。结论是,我们的Ag NPs在超稳定分散体中表现出高浓度,因此优于市售的Ag NPs。

著录项

  • 作者单位

    Delaware State University.;

  • 授予单位 Delaware State University.;
  • 学科 Chemistry.;Materials science.;Nanoscience.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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