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Synthesis and development of silicon analog of fluorescein fluorophores and esterification catalysts.

机译:荧光素荧光团和酯化催化剂的硅类似物的合成与开发。

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摘要

The synthesis and development of new materials and the improvement of the existing materials are a continuous quest for scientists. There is a constant need for new materials that have more advantages over the existing ones. The research to develop new materials can be appreciated in high magnitude, as the new materials improve the livelihood. In this dissertation, we are presenting our progress in developing new materials, such as fluorescence fluorophores as probes, and esterification catalysts.;In the first part of the dissertation, the synthesis and characterization of a novel silicon analog of fluorescein (silyl fluorescein) was studied in detail. The photo-physical properties and toxicity studies of these fluorophores are also discussed. Compared to fluorescein, silyl fluorescein displayed a 90 nm longer wavelength in its absorption and emission. Silyl fluorescein showed good solubility in water and organic solvents, and has a considerable fluorescence quantum yield compared to fluorescein. Silyl fluorescein was found to be moderately toxic under light and non-toxic in dark, where as fluorescein toxicity was found to be greater than silyl fluorescein both in the dark and under light.;Two probes from our novel silyl fluorescein fluorophore were developed and studied. SIF HySOx is probe for hypochlorous acid (HOCl), which is a reactive oxygen species (ROS) found in cells that are stressed due to various diseases. The HOCl probe was synthesized and its photo-physical properties were studied. It was found to be selective and sensitive only to HOCl. A fluoride probe (DTBDMS SIF P) was also developed from silyl fluorescein. Its synthesis and photo-physical properties were also studied. The probe displayed excellent selectivity and sensitivity to fluoride (TBAF) in the presence of other halides and bases. Future directions on novel fluorophore are briefly mentioned.;Second part of the dissertation is focused on the screening of two organic esterification catalysts which were synthesized by Dr. Liu and Dr. Wong. The catalysts which are synthesized from pyridine and dinitrobenzene moieties were screened with several carboxylic acids and alcohols.;Catalyst 8-4 was shown to be moderately active in the esterification of carboxylic acids and alcohols. It has no selectivity in the esterification of primary, secondary, tertiary alcohols, and the carboxylic acids that are attached to those carbons. Catalyst 9-1 however, was more efficient in the esterification of carboxylic acids and alcohols. Catalyst 9-1 displayed selectivity in the esterification of primary, over secondary, over tertiary alcohols, and the carboxylic acids that are attached to those carbons. Catalyst 9-1 gave up to 95% isolated yields.
机译:新材料的合成和开发以及现有材料的改进是科学家的不懈追求。不断需要比现有材料更具优势的新材料。随着新材料改善民生,开发新材料的研究将受到高度赞赏。在本文中,我们介绍了我们在开发新材料方面的进展,例如作为探针的荧光团和酯化催化剂。;在论文的第一部分中,一种新型的荧光素硅类似物(甲硅烷基荧光素)的合成和表征是详细研究。还讨论了这些荧光团的光物理性质和毒性研究。与荧光素相比,甲硅烷基荧光素的吸收和发射波长长90 nm。甲硅烷基荧光素在水和有机溶剂中显示出良好的溶解性,并且与荧光素相比具有相当大的荧光量子产率。发现甲硅烷基荧光素在光下具有中等毒性,而在黑暗中则无毒,因为在黑暗和光线下,荧光素的毒性都大于甲硅烷基荧光素。;研制并研究了我们新型甲硅烷基荧光素荧光团的两种探针。 SIF HySOx是次氯酸(HOCl)的探针,次氯酸是在因各种疾病而受到压力的细胞中发现的一种活性氧(ROS)。合成了HOCl探针并研究了其光物理性质。发现它是选择性的并且仅对HOCl敏感。还从甲硅烷基荧光素开发了氟化物探针(DTBDMS SIF P)。还对其合成和光物理性质进行了研究。在存在其他卤化物和碱的情况下,该探针显示出优异的选择性和对氟化物(TBAF)的敏感性。简要介绍了新型荧光团的未来发展方向。论文的第二部分重点研究了由刘博士和黄博士合成的两种有机酯化催化剂。用几种羧酸和醇筛选由吡啶和二硝基苯部分合成的催化剂。催化剂8-4在羧酸和醇的酯化反应中具有中等活性。它在伯,仲,叔醇以及与这些碳相连的羧酸的酯化反应中没有选择性。然而,催化剂9-1在羧酸和醇的酯化中更有效。催化剂9-1在伯醇,仲醇,叔醇以及与那些碳相连的羧酸的酯化反应中显示出选择性。催化剂9-1的分离产率高达95%。

著录项

  • 作者

    Sattenapally, Narsimha.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Chemistry Organic.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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