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Development and study of high-Tc superconductor conductive polymer assemblies.

机译:高Tc超导体导电聚合物组件的开发和研究。

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摘要

This dissertation presents the development and study of organic polymeric conductor/High-Tc superconductor bilayers, for exploration of the superconductor proximity effect. A major obstacle to this research is the instability of the High-Tc superconductor towards H2O and CO2 as it is necessary to create hybrid structures where the two conductors have intimate contact. For this reason, a study of the corrosion characteristics of the RBa2Cu3O 7 (R=Y, Eu, Nd) series was undertaken. In this study, R=Nd was shown to have enhanced corrosion resistance.;In an effort to develop chemical processing methods that allow for the production of intimate contact between the cuprate superconductor and the conductive polymer systems, a study of alkyl amine adsorbed onto the surface of the superconductor is presented. In the electrochemical part of the study, alkyl amine ferrocene adsorbed onto the surface revealed that the amines are strongly adhered to the superconductor while still allowing electrons to pass from the superconductor to the ferrocene moiety. The self-assembled monolayer (SAM) structure of CF3(CF2)3(CH2) 11NH2 atop the superconductor was elucidated by employing several techniques, including atomic scale atomic force microscopy (AFM).;A novel multistep bilayer sample preparation protocol is presented involving thin film fabrication by pulsed laser deposition (PLD), patterning by shadow mask ablation, sample thinning by scanning probe and electropolymerization of the polymer. Scanning probe thinning yields a smooth superconductor surface, a known superconductor thickness, and if a blocking layer is employed prior to thinning, the localization of polymer growth.;Studies of the response of a bilayer structure of Y0.6Ca 0.4Ba1.6La0.4 Cu3O7/poly pyrrole to polymer redox cycling showed a semi-reversible suppression of transition temperature qualitatively consistent with a combination of corrosion and superconductor proximity effect. Quantitative analysis in the framework of the proximity effect shows evidence suggestive of an unexpected long superconductor coherence length. A qualitative model based on grain boundaries is postulated to explain this effect.
机译:本文提出了有机高分子导体/ High-Tc超导体双层的研究与发展,以探索超导体的邻近效应。这项研究的主要障碍是高Tc超导体对H2O和CO2的不稳定性,因为必须创建两个导体紧密接触的混合结构。因此,对RBa2Cu3O 7(R = Y,Eu,Nd)系列的腐蚀特性进行了研究。在这项研究中,R = Nd具有增强的耐蚀性。为了开发一种化学处理方法以使铜酸盐超导体与导电聚合物体系之间产生紧密接触,研究了吸附在铜盐上的烷基胺的研究。介绍了超导体的表面。在研究的电化学部分中,吸附在表面上的烷基胺二茂铁表明胺牢固地附着在超导体上,同时仍允许电子从超导体传递到二茂铁部分。通过包括原子尺度原子力显微镜(AFM)在内的多种技术阐明了超导体顶部CF3(CF2)3(CH2)11NH2的自组装单分子层(SAM)结构。通过脉冲激光沉积(PLD)制造薄膜,通过荫罩烧蚀进行图案化,通过扫描探针使样品变薄以及聚合物的电聚合。扫描探针的减薄会产生光滑的超导体表面,已知的超导体厚度,如果在减薄之前使用了阻挡层,则聚合物生长的局限性; Y0.6Ca 0.4Ba1.6La0.4双层结构响应的研究Cu3O7 /聚吡咯到聚合物的氧化还原循环显示出过渡温度的半可逆抑制,其定性与腐蚀和超导体邻近效应相结合。在邻近效应框架内的定量分析表明,证据表明超导体相干长度出乎意料的长。假定基于晶粒边界的定性模型来解释这种效果。

著录项

  • 作者

    Schougaard, Steen Brian.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Inorganic.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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