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Characterizing Engineered Nanomaterials: From Environmental, Health and Safety Research to the Development of Shaped Nanosphere Lithography for Metamaterials

机译:工程纳米材料的表征:从环境,健康和安全研究到超材料成形纳米球形平版印刷的发展

摘要

In this thesis two issues in nanotechnology have been addressed. The first is the comprehensive characterization of engineered nanomaterials prior to their examination in toxicology and environmental studies. The second is the development of a method to produce nanostructure arrays over large areas and for low cost.A major challenge when assessing nanomaterial’s risks is the robust characterization of their physicochemical properties, particularly in commercial products. Such data allows the critical features for biological outcomes to be determined. This work focused on the inorganic oxides that were studied in powdered and dispersed forms as well as directly in consumer sunscreen products. The most important finding was that the commercial sunscreens that listed titania or zinc oxide as ingredients contained nanoscale materials. Cell free photochemical tests revealed that ZnO particles without any surface coating were more active at generating ROS than surface coated TiO2 nanoparticles. These studies make clear the importance of exposure studies that examine the native form of nanomaterials directly in commercial products. The second part of this thesis presents the development of a new method to fabricate gold nanoring and nanocrescent arrays over large areas; such materials have unique optical properties consonant with those described as metamaterials. A new shaped nanosphere lithography approach was used to manipulate the form of silica nanospheres packed onto a surface; the resulting array of mushroom structures provided a mask that after gold evaporation and etching left either golden rings or crescents over the surface. The structures had tunable features, with outer diameters ranging from 200 to 350 nm for rings and crescent gap angles of ten to more than a hundred degrees. The use of a double mask method ensured the uniform coverage of these structured over 1 cm2 areas. Experimental and theoretical investigations of the optical properties of the arrays revealed the optical resonances in the infrared region. Finally, in the course of developing the nanorings, etch conditions were developed to deposit large area arrays of polystyrene nanodoughnuts with diameters from 128 to 242 nm. These non-conductive structures provide an ideal template for further attachment of magnetic of optically emissive nanoparticles.
机译:在这篇论文中,解决了纳米技术中的两个问题。首先是在毒理学和环境研究中对工程纳米材料进行全面表征之前。第二个是开发一种在大面积上以低成本生产纳米结构阵列的方法。评估纳米材料的风险时面临的主要挑战是对其理化特性(尤其是在商业产品中)的稳健表征。这样的数据可以确定生物学结果的关键特征。这项工作集中于粉末状和分散状以及直接在消费防晒产品中研究的无机氧化物。最重要的发现是将二氧化钛或氧化锌列为成分的商业防晒霜包含纳米级材料。无细胞光化学测试表明,没有表面涂层的ZnO颗粒比表面涂层的TiO2纳米颗粒更能产生ROS。这些研究表明,直接研究商业产品中纳米材料的天然形式的暴露研究的重要性。本文的第二部分介绍了一种在大面积上制造金纳米环和纳米新月形阵列的新方法的发展。这样的材料具有与描述为超材料的特征相一致的独特光学性质。一种新的形状的纳米球光刻方法被用来操纵填充在表面上的二氧化硅纳米球的形式。最终形成的蘑菇结构阵列提供了一个掩模,该掩模在金蒸发和蚀刻后在表面上留下金戒指或月牙形。该结构具有可调整的特征,环的外径范围为200至350 nm,新月间隙角为10至100度以上。使用双重掩膜方法可确保在1 cm2的区域上均匀覆盖这些结构。对阵列的光学性质的实验和理论研究揭示了在红外区域的光学共振。最后,在开发纳米环的过程中,开发了蚀刻条件以沉积直径为128至242 nm的大面积聚苯乙烯纳米甜甜圈阵列。这些非导电结构为进一步附着光发射纳米粒子的磁性提供了理想的模板。

著录项

  • 作者

    Lewicka Zuzanna;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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