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Synthesis, characterization and optical properties of conjugated boronate-linked materials and their applications in optical sensing of Lewis bases.

机译:共轭硼酸酯连接材料的合成,表征和光学性质及其在路易斯碱的光学传感中的应用。

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摘要

Organoboron compounds, with Lewis acidic boron centers, have been emerged as an important class of materials, especially in the area of chemical sensors. Herein, boranes and boronate esters in the sensing perspective were overviewed in Chapter 1. Examples of synthesis and sensing applications of boron-containing conjugated polymers were highlighted.;Boronate ester formation provides the advantages of facile synthesis, tunable optical properties, enhanced stability and planar geometry. Thus, boronate esters, especially dioxaboroles, were proposed to use as alternatives of boranes to design better sensors for Lewis bases. Based on the previous investigation of fluorenyl bis- and polydioxaboroles by our group, the binding mechanism of dioxaborole based sensors for Lewis bases were discussed in Chapter 2. The binding between dioxaboroles and fluoride was tunable, sensitive, reversible and cross-reactive. The selected fluorenyl bis(dioxaborole)s were employed in cross-reactive sensor arrays for anions in Chapter 3.;Inspired by the extensive research of donor-pi-acceptor (D-pi-A) boranes, triphenylamino group was attached to borole moiety to form two families of D-pi-A boronate esters. Synthesis, characterization, structure and opto/electronic property relationship and sensing applications were investigated in Chapter 4 and 5.;Based on the previous work of boronate ester-linked materials in sensors, the future directions were predicted in Chapter 6. The new fluorenyl boroles, D-pi-A boroles, cruciform and metal-chelated boronate esters were explored.
机译:具有路易斯酸性硼中心的有机硼化合物已成为重要的一类材料,特别是在化学传感器领域。本文在第1章中概述了感测角度的硼烷和硼酸酯。重点介绍了含硼共轭聚合物的合成和感测应用实例。硼酸酯的形成具有合成容易,可调光特性,增强的稳定性和平面性的优点。几何。因此,提议使用硼酸酯,尤其是二氧杂硼酸酯作为硼烷的替代物,以设计用于路易斯碱的更好的传感器。基于我们小组先前对芴基双-和聚二氧杂硼酸的研究,第2章讨论了基于二氧杂硼酸的传感器对Lewis碱的结合机理。二氧杂硼酸与氟化物之间的结合是可调的,敏感的,可逆的和交叉反应的。所选的芴基双(二氧杂硼烷)在第3章中用于阴离子的交叉反应传感器阵列中;受供体-π-受体(D-pi-A)硼烷的广泛研究的启发,三苯基氨基被连接到硼的部分上形成两个D-pi-A硼酸酯家族。在第4章和第5章中研究了合成,表征,结构以及光电/电子特性的关系和传感应用;基于传感器中硼酸酯连接材料的先前工作,在第6章中预测了未来的发展方向。研究了D-pi-A硼酸酯,十字形和金属螯合的硼酸酯。

著录项

  • 作者

    Cai, Min.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Chemistry Organic.;Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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