首页> 外文OA文献 >Polymer sensors and actuators: synthesis and characterization of polythiophenes modified with benzospiropyran derivatives
【2h】

Polymer sensors and actuators: synthesis and characterization of polythiophenes modified with benzospiropyran derivatives

机译:聚合物传感器和致动器:用苯并螺吡喃衍生物改性的聚噻吩的合成和表征

摘要

The aim of this thesis is to understand the basic physico/chemical behaviour of novel nitrospiropyran-substituted-(poly)terthiophene materials. Attractive characteristics that distinguish these materials include electrochemical/photochemical-switching processes. Understanding the fundamental behaviour of these new derivatives is the key to taking advantage of these characteristics. The stimuli induced isomerisation between the colourless spiropyran and the highly coloured merocyanine is the key-process studied in this research.udChapter 2 reports the electrochromic behaviour of spiropyran, through irreversible electrooxidative isomerisation in at least two merocyanine isomers. The molecular photophysical processes of the electrochemically-generated polymer are reported and the properties studied.udIn Chapter 3 a new monomer, which differs by a single methylene group in the linking ester-linker functionality from the previous one, will be introduced. A nitrospiropyran was used as a reference, and a detailed spectroscopy analysis will help in the description of the thermodynamic properties.udChapter 4 highlights how the polymeric molecular switches can bind an important extracellular protein, fibronectin, and explores by means of microscopy the on-demand tuning of the protein adhesion.udA new derivative is presented in Chapter 5, wherein a spiropyran moiety is intercalated between two thiophenes. The electrochemical and optical switching of the spiropyran and thiophene groups were investigated.udIn Chapter 6 three new spiropyran-based derivatives are presented, and routes to multi-modal switching behavior are explored via photochemical, electrochemical and chemical stimuli, such as pH. Their reversibility and their properties are investigated using both spectroscopic and electroanalytical methods.udThe final chapter outlines future work and initial progress related to the integration of spiropyran-thiophene polymers into photo-electro active portable analytical devices.
机译:本文的目的是了解新型硝基螺并吡喃取代的(聚)对噻吩材料的基本物理/化学行为。区分这些材料的吸引人的特性包括电化学/光化学转换过程。了解这些新衍生物的基本行为是利用这些特征的关键。无色螺吡喃和高度着色的花菁之间的刺激诱导的异构化是本研究的关键过程。第2章报道了螺吡喃的电致变色行为,这是通过至少两种花菁异构体中不可逆的电氧化异构化而实现的。报告了电化学生成的聚合物的分子光物理过程,并研究了其性质。 ud在第3章中,将介绍一种新的单体,该单体在连接酯-接头功能上与前一个单体不同,只有一个亚甲基。硝基螺吡喃用作参考,详细的光谱分析将有助于描述热力学性质。 ud第4章重点介绍了聚合物分子开关如何结合重要的细胞外蛋白纤连蛋白,并通过显微镜观察了第五章介绍了一种新的衍生物,其中螺吡喃部分插入两个噻吩之间。在第6章中,提出了三种新的螺吡喃基衍生物,并通过光化学,电化学和化学刺激(例如pH)探索了多模式转换行为的途径。使用光谱学和电分析方法研究了它们的可逆性和性质。 ud最后一章概述了将螺吡喃-噻吩聚合物集成到光电活性便携式分析设备中的未来工作和初步进展。

著录项

  • 作者

    Zanoni Michele;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号