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Structural design, X -ray characterization, and photochemical investigation of organic molecules in highly ordered media: Organic molecular rotors and reactive intermediates in crystals.

机译:高序介质中有机分子的结构设计,X射线表征和光化学研究:晶体中的有机分子转子和反应性中间体。

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摘要

Organic crystals are viewed by many as long rows of molecules trapped in a rigid geometric arrangement, lifeless compared to the molecular freedom that may be possible in solution. The idea that atoms and molecules move in crystals has long been viewed as outrageous until the discovery of X-ray diffraction, which provides an average unit cell or the time and space average of the distribution of atoms over the entire crystal. Crystalline organic molecules are not stationary; they move appreciably about their mean positions in the crystal lattice. The idea of molecular motions in crystals is the main theme in this dissertation, which will focus on molecules in crystals and their fate upon external stimuli (i.e. photochemical, electrical, or magnetic).;Chapter 1 outlines the introduction for the three main projects in this dissertation: (1) The current developments in the design and synthesis of organic molecules with rotary motion serve as the justification for the design, synthesis, and X-ray characterizations of molecular "compasses" and "gyroscopes" (Chapter 2). (2) The second part of the introduction focuses on the reported methods for the preparation of aceanthrylenes (Chapter 3) and other higher order cyclopentafused polycyclic aromatic hydrocarbons (CP-PAHs) (Chapter 4). (3) The last section of the introduction will focus on the photochemistry of reactive intermediates such as biradicals, carbenes, and ionic intermediates (Chapter 5) in solution and organic crystals.;Chapter 2 describes the current developments within the past three years of intense research on the design, synthesis, and X-ray characterizations of molecular "compasses" and "gyroscopes" with polar phenylene groups that can be influenced by external stimuli (i.e. electric or magnetic fields).;Chapter 3 details the palladium(0)-catalyzed methodology for the synthesis of aceanthrylenes. Chapter 4 presents the synthesis, X-ray characterization, and photophysical measurements of cyclopent[hi]aceanthrylene, a nonalternant cyclopentafused polycyclic aromatic hydrocarbon, by a similar Pd(0)-catalyzed methodology described in Chapter 3.;Chapter 5 reports the synthesis, photochemical generation, and product analysis of ionic intermediates (oxonium ylides) in solution, low-temperature organic glasses, and crystals. The first spectroscopic detection of oxonium ylides from a triplet carbene is presented.
机译:有机晶体被许多排成一排排长成刚性几何结构的分子所看,与溶液中可能存在的分子自由度相比,没有生命。一直以来,原子和分子在晶体中移动的想法一直被认为是荒谬的,直到发现了X射线衍射,它提供了平均晶胞或原子在整个晶体中分布的时间和空间平均值。晶体有机分子不是固定的;它们在晶格中的平均位置附近明显移动。晶体中分子运动的概念是本论文的主题,它将聚焦于晶体中的分子及其在外部刺激(光化学,电或磁)的作用下的命运。第一章概述了晶体中的三个主要项目。本文的主要研究内容:(1)旋转运动有机分子设计和合成的最新进展为分子“罗盘”和“陀螺仪”的设计,合成和X射线表征提供了依据(第二章)。 (2)引言的第二部分着重于报道的乙炔的制备方法(第3章)和其他高阶环戊稠合多环芳烃(CP-PAHs)(第4章)。 (3)导言的最后一部分将重点讨论溶液和有机晶体中反应性中间体如双自由基,羧甲酸酯和离子中间体(第5章)的光化学。第2章介绍了过去三年的激烈发展研究具有极性亚苯基的分子“罗盘”和“陀螺仪”的设计,合成和X射线表征,这些极性亚苯基会受到外部刺激(即电场或磁场)的影响。;第3章详细介绍了钯(0)-乙炔合成的催化方法。第4章介绍了环戊基蒽,一种非取代的环戊稠合多环芳烃,其合成方法,X射线表征和光物理测量是通过第3章中所述的类似Pd(0)催化的方法进行的;第5章报告了该合成,光化学生成,以及溶液,低温有机玻璃和晶体中离子中间体(氧化on)的产物分析。提出了从三重态卡宾中的氧鎓叶立德的第一个光谱检测。

著录项

  • 作者

    Dang, Hung.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 337 p.
  • 总页数 337
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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