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Electrical and Electrochemical Properties of Nitrogen-Containing Tetrahedral Amorphous Carbon (ta-C) Thin Films.

机译:含氮四面体非晶碳(ta-C)薄膜的电和电化学性质。

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摘要

Tetrahedral amorphous carbon (ta-C) is a diamond-like carbon (DLC) material comprised of a mixture of sp2 (∼40%) and sp3-bonded (∼60%) carbon domains. The physicochemical structure and electrochemical properties depend strongly on the sp2/sp3 bonding ratio as well as the incorporation of impurities, such as hydrogen or nitrogen. The ability to grow ta-C films at lower temperatures (25-100 °C) on a wider variety of substrates is a potential advantage of these materials as compared with diamond films.;In this project, the basic structural and electrochemical properties of nitrogen-incorporated ta-C thin films will be discussed. The major goal of this work was to determine if the ta-C:N films exhibit electrochemical properties more closely aligned with those of boron-doped diamond (sp 3 carbon) or glassy carbon (amorphous sp2 carbon). Much like diamond, ta-C:N thin-film electrodes are characterized by a low background voltammetric current, a wide working potential window, relatively rapid electron-transfer kinetics for aqueous redox systems, such as Fe(CN) 6-3/-4 and Ru(NH3)6+3/+2 , and weak adsorption of polar molecules from solution. For example, negligible adsorption of methylene blue was found on the ta-C:N films in contrast to glassy carbon; a surface on which this molecule strongly adsorbs. The film microstructure was studied with x-ray photoelectron microscopy (XPS), visible Raman spectroscopy and electron-energy loss spectroscopy (EELS); all of which revealed the sp2-bonded carbon content increased with increasing nitrogen.;The electrical properties of ta-C:N films were studied by four-point probe resistance measurement and conductive-probe AFM (CP-AFM). The incorporation of nitrogen into ta-C films increased the electrical conductivity primarily by increasing the sp2-bonded carbon content. CP-AFM showed the distribution of the conductive sp2-carbon on the film surface was not uniform. These films have potential to be used in field emission area. The heterogeneous electrochemical properties were studied with scanning electron microscopy (SECM). If was found that more electrically conducting sites were isolated by less conducting or even insulating sites. Consistent with the heterogeneous electrical properties, heterogeneous electrochemical activity was observed for different aqueous redox analytes.;Flow injection analysis with electrochemical detection (EC-FIA) of dopamine and norepinephrine were carried out using the N-ta:C films. Detection figures of merit for these biomolecules were determined. These biomolecules can be detected stably and reproducible in PBS buffer at constant potential by N-ta:C film. The N-ta:C films provide good limits of detection for these biomolecules.;N-ta:C films show great promise in the electroanalytical field. Compared with the diamond, the growth condition is much milder. These N-ta:C films are commercially available and could be produced in large scale. All of these virtues make N-ta:C films excellent choices for electroanalytical measurements.
机译:四面体无定形碳(ta-C)是类金刚石碳(DLC)材料,由sp2(〜40%)和sp3键合(〜60%)碳域的混合物组成。物理化学结构和电化学性质在很大程度上取决于sp2 / sp3的键合率以及杂质的掺入,例如氢或氮。与金刚石薄膜相比,这些材料的潜在优势是能够在较低的温度(25-100°C)下在多种衬底上生长ta-C薄膜。该项目中,氮的基本结构和电化学性质-掺入的ta-C薄膜将被讨论。这项工作的主要目的是确定ta-C:N膜的电化学性能是否与掺硼金刚石(sp 3碳)或玻璃碳(sp2非晶碳)的电化学性能更接近。 ta-C:N薄膜电极与钻石非常相似,其特征在于背景伏安电流低,工作电位窗口宽,水性氧化还原体系(如Fe(CN)6-3 /-)的电子转移动力学相对较快。 4和Ru(NH3)6 + 3 / + 2以及极性分子从溶液中的弱吸附。例如,与玻璃碳相比,在ta-C:N膜上发现的亚甲基蓝吸附可忽略不计;该分子强烈吸附的表面。用X射线光电子显微镜(XPS),可见拉曼光谱和电子能量损失光谱(EELS)研究了薄膜的微观结构。通过四点探针电阻测量和导电探针原子力显微镜(CP-AFM)研究了ta-C:N薄膜的电学性能。将氮掺入ta-C膜中主要是通过增加sp2键合的碳含量来提高电导率。 CP-AFM表明导电sp2-碳在膜表面的分布不均匀。这些薄膜具有在场发射领域中使用的潜力。用扫描电子显微镜(SECM)研究了非均相电化学性能。如果发现更多的导电部位被较少的导电甚至绝缘部位隔离。与异质电学性质一致,在不同的水性氧化还原分析物上观察到异质的电化学活性。使用N-ta:C膜对多巴胺和去甲肾上腺素进行电化学检测(EC-FIA)流动注射分析。确定了这些生物分子的检测值。这些生物分子可以通过N-ta:C膜以恒定电位在PBS缓冲液中稳定地检测和重现。 N-ta:C膜为这些生物分子提供了良好的检测限。N-ta:C膜在电分析领域显示出广阔的前景。与钻石相比,生长条件要温和得多。这些N-ta:C膜是可商购的,并且可以大规模生产。所有这些优点使N-ta:C膜成为电分析测量的绝佳选择。

著录项

  • 作者

    Yang, Xingyi.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Chemistry Analytical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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