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Relationship between chemical reactivity and photochromism using 1,2-dithienylethene-based molecular switches.

机译:使用基于1,2-二噻吩乙烯的分子开关的化学反应性与光致变色之间的关系。

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摘要

Molecular systems with integrated chemical reactivity and photochromic functions are potentially beneficial for the development of novel functional materials. Rationally designed photoresponsive compounds can be used to regulate chemical reactivity using light, and such systems could significantly influence both synthesis and drug delivery by increasing efficiency and decreasing undesired side-reactions or side effects. Chemical reactivity can also be employed to control the photochromic behaviour of photoswitches, providing a locking mechanism and enabling chemical detection through facile monitoring.;First, the concept of reactivity-gated photochromism is introduced and demonstrated using a spontaneous and mild chemical reaction. Results show that non-photoswitchable molecules can be rendered photoactive by creating the dithienylethene architecture using the Diels-Alder cycloaddition.;The use of the dithienylethene architecture as a photocleavable group that combines reactivity-gated photochromism and photogated reactivity is then presented. This approach is based on the Diels-Alder reaction between photostable dienes and dienophiles to generate photoswitchable dithienylethene derivatives. The photoresponsive unit is employed to regulate the reverse cycloaddition, enabling selective and sequential photorelease of the small dienophile auxiliary.;Finally, the Lewis acidity of a boron-containing dithienylethene derivative is photomodulated. Upon exposure to light of the appropriate wavelengths, the isomerisation of the dithienylethene backbone causes a bond rearrangement of the 1,3,2-dioxaborole unit, directly affecting the electron density of the boron centre and changing the Lewis acidity of the atom.;Dithienylethene-based molecular switches are particularly well-suited to the development of functional systems with integrated chemical reactivity functions since they can be toggled between two thermally stable and structurally unique isomers when irradiated with light of the appropriate wavelengths. Dithienylethene derivatives exhibit significant differences between their ring-open and ring-closed forms, which can influence their reactivity. Alternatively, multiple strategies permit the regulation of their photochromic properties through chemical reactions or interactions. The research presented in this thesis focuses on the development of novel approaches to integrate photochromism and chemical reactivity.;Keywords: Photochromism, reactivity-gated photochromism, photogated reactivity, dithienylethenes, Diels-Alder reaction, photorelease, Lewis acidity.
机译:具有集成的化学反应性和光致变色功能的分子系统可能对开发新型功能材料有利。合理设计的光响应性化合物可用于使用光调节化学反应性,并且此类系统可通过提高效率和减少不良的副反应或副作用来显着影响合成和药物递送。化学反应性也可用于控制光开关的光致变色行为,提供锁定机制并通过便捷的监控进行化学检测。首先,引入并通过自发且温和的化学反应论证了反应性门控光致变色的概念。结果表明,通过Diels-Alder环加成反应生成二噻吩乙烯结构,可以使非光交换分子具有光活性。然后提出了使用二噻吩乙烯结构作为结合了反应性选通光致变色和光化反应性的光可裂解基团的用途。该方法基于光稳定的二烯和亲二烯体之间的狄尔斯-阿尔德反应,以产生可光开关的二噻吩基乙烯衍生物。使用光响应单元调节逆环加成反应,从而实现对小亲二烯体助剂的选择性和顺序光释放。最后,对含硼二噻吩乙烯衍生物的路易斯酸进行光调节。暴露于适当波长的光后,二噻吩基乙烯主链的异构化导致1,3,2-二氧杂硼烷单元的键重排,直接影响硼中心的电子密度并改变原子的路易斯酸度。分子开关特别适合用于具有集成化学反应功能的功能系统的开发,因为当用适当波长的光照射时,它们可以在两种热稳定且结构独特的异构体之间切换。二噻吩乙烯衍生物在其开环和闭环形式之间显示出显着差异,这会影响它们的反应性。或者,多种策略允许通过化学反应或相互作用调节其光致变色性质。本论文的研究重点是开发将光致变色和化学反应性相结合的新方法。

著录项

  • 作者

    Lemieux, Vincent.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 300 p.
  • 总页数 300
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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