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Characteristics and use of thin metals on modified glass substrates.

机译:薄金属在改性玻璃基板上的特性和用途。

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摘要

Ultra-thin films of Au are formed on glass by thermal evaporation of Au onto a silane-modified glass surface. Monolayers of 3-aminopropyltriethoxysilane on glass (APS/glass) are outstanding surfaces for the formation of adherent, electrically conductive, smooth, and highly oriented Au films. Scanning tunneling microscopy images indicate that ultra-thin Au films are highly conductive and have a significant {lcub}111{rcub} texture, and X-ray diffraction studies confirm the latter. In addition, Au films on APS/glass surface are not removed by tape tests, pointing to a strong chemical interaction between the Au and amine surface. Unlike metal adhesion promoters, APS layer does not diffuse through Au films, making their use in advanced devices attractive.; Two applications of the Au films on APS/glass substrates are described. First, Au band electrodes with widths ranging from 3 to 150 nm are investigated by obtaining the voltammetric response of a series of substituted ferrocenes in non-aqueous electrolyte. Plots of normalized limiting current for each ferrocene derivative as a function of normalized electrode width reveal a negative response from traditional theoretical predictions. The observed negative responses for electrodes less than 50 nm in width are explained by effects that become important when the sizes of electrode and redox species are comparable. Concerns regarding the real surface area of band electrodes are addressed by labeling of the exposed Au of nanoband electrode with ferrocene-alkanethiol and measurements of double-layer capacitance. Microscopy studies of the epoxy/Au/glass interface point to insufficient insulation of the Au by the epoxy as the result of defects.; Lastly, fabrication methods in previous studies are used to construct laterally patterned metal features through the use of photolithography techniques. A photoprotecting group, nitroveratryloxycarbonyl, is covalently linked to the amine group of the APS monolayers. The sample is patterned by using a mask that allows UV light to reach the nitroveratryloxycarbonyl-APS/glass surface and remove the nitroveratryloxycarbonyl groups in the exposed areas. Gold is then vapor deposited on the patterned surface and the success of the patterning experiments are evaluated by “developing” the Au through the removal of tape.
机译:通过将Au热蒸发到硅烷改性的玻璃表面上,在玻璃上形成Au的超薄膜。玻璃上的3-氨基丙基三乙氧基硅烷单层(APS /玻璃)是出色的表面,用于形成附着,导电,光滑且高度取向的Au膜。扫描隧道显微镜图像表明,超薄金膜具有很高的导电性,并具有明显的{lcub} 111 {rcub}纹理,并且X射线衍射研究证实了后者。此外,胶带测试未去除APS /玻璃表面上的Au膜,这表明Au和胺表面之间存在强烈的化学相互作用。与金属粘合促进剂不同,APS层不会扩散穿过Au膜,因此在先进设备中的使用很有吸引力。描述了金膜在APS /玻璃基板上的两种应用。首先,通过获得一系列在非水电解质中取代的二茂铁的伏安响应,研究了宽度为3至150 nm的Au带电极。每个二茂铁衍生物的归一化极限电流与归一化电极宽度的函数关系图显示了来自传统理论预测的负面响应。电极宽度小于50 nm时观察到的负响应由当电极和氧化还原物质的尺寸可比时变得重要的效应解释。通过用二茂铁-链烷硫醇标记纳米带电极的裸露的Au并测量双层电容,可以解决有关带电极实际表面积的担忧。环氧树脂/金/玻璃界面的显微镜研究表明,由于缺陷,环氧树脂对金的绝缘不充分。最后,先前研究中的制造方法用于通过使用光刻技术来构造横向图案化的金属特征。光保护基硝化过氧化烯氧基羰基共价连接到APS单层的胺基上。通过使用掩模使样品图案化,该掩模允许紫外光到达亚硝基过氧化羰基-APS /玻璃表面并去除暴露区域中的亚硝基过氧化羰基。然后将金气相沉积在图案化的表面上,并通过去除胶带“显影”金来评估图案化实验的成功。

著录项

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Chemistry Analytical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;工程材料学;
  • 关键词

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