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Studies on porphyrin based donor-acceptor systems and chemosensors.

机译:基于卟啉的供体-受体系统和化学传感器的研究。

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摘要

The research reported in this thesis deals with the synthesis, characterization and optical absorption and emission studies of noncovalently linked porphyrin based donor-acceptors systems and chemosensors. The first three chapters reports the synthesis and characterization of several "Quinhydrone" based porphyrin complexes. The first complex discussed show an enhanced fluorescence quenching upon formation of the "quinhydrone" complex. The reasons for the formation of and the mechanism by which the fluorescence of the porphyrin is quenched is discussed. The second complex described is a "quinhydrone-based" fluorescent chemosensor for hydroquinone detection. The selectivity and the mechanism by which fluorescence enhancement occurs, is described. The third type of complex discussed is a "quinhydrone" based multiporphyrinic array. The photoinduced energy transfer that is occurring in the supramolecular complex is discussed.Finally, formation of noncovalently linked porphyrin-C60 complexes is discussed in the chapter 5 and 6. The mode of binding between the zinc porphyrin and the 2(pyridyl)fulleropyrrolidine is discussed and characterized by 1H NMR, UV-visible, ESI-Mass and fluorescence spectroscopy. The binding constant and thermodynamic parameters for the various complexes are calculated using UV-Visible spectroscopy to probe the strength of the binding. Molecular modeling using semi empirical PM3 and ab initio calculations on these complexes were performed to gain insight into the structural aspects of these complexes.
机译:本文报道的研究涉及基于非共价连接的卟啉的供体-受体系统和化学传感器的合成,表征以及光吸收和发射的研究。前三章报道了几种基于“奎醌”的卟啉配合物的合成和表征。讨论的第一个配合物显示出在形成“醌氢酮”配合物时增强的荧光猝灭。讨论了形成卟啉的荧光的原因和猝灭机理。所描述的第二种复合物是用于对苯二酚检测的“基于醌氢醌”的荧光化学传感器。描述了荧光增强的选择性和机理。讨论的第三种复合物是基于“醌”的多卟啉阵列。讨论了在超分子复合物中发生的光诱导的能量转移。最后,在第5和第6章中讨论了非共价连接的卟啉-C60复合物的形成。讨论了卟啉锌与2(吡啶基)全吡咯烷酮之间的结合方式。并通过1H NMR,UV-可见,ESI-Mass和荧光光谱进行表征。使用紫外可见光谱法计算各种配合物的结合常数和热力学参数,以探测结合强度。使用半经验PM3进行分子建模,并从头开始对这些复合物进行计算,以深入了解这些复合物的结构方面。

著录项

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Chemistry Analytical.Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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