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Aminobiphenylcarboxylic acid derivatives for the creation of nanometer-scale molecular rods and shape -persistent macrocycles.

机译:氨基联苯羧酸衍生物,用于创建纳米级分子棒和形状持久的大环。

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摘要

This dissertation contains three chapters involving the design and synthesis of nanometer-sized building blocks for the creation of nanometer-scaled architectures. Chapter 1 describes the development of aminobiphenylcarboxylic acid (Abc)-based amino acids and their use in synthesis of molecular rods. The chapter begins with Abc building blocks designed for solubility in lipophilic organic solvents (AbcR) and ends with the development of a water-soluble Abc analog, Abc2K. Chapter 1 focuses on the development and transition from molecular rods containing aliphatic side chains [Boc-(Abc R)n-OR, n =1-4] that can be solublized in organic solvents to molecular rods containing charged moieties [H-(AbcK) n-NH2, n =1-5 and H-(Abc2K)n-NH 2, n =1-10] that can be solublized in water. Chapter 1 introduces Abc 2K oligomers as a new class of water-soluble molecular rods that can be synthesized in precise and defined lengths up to at least 10 nm in 1-nm increments. The synthesis of the protected building blocks and compatibility of the building blocks with standard solid-phase peptide synthesis techniques will be demonstrated. The compatibility of the unprotected water-soluble oligomers with standard analytical purification and characterization techniques will also be demonstrated. Finally, the chapter ends in a discussion about the biological applications of Abc2K amino acids by showing how they can be combined with alpha-amino acids to serve as rigid linkers between various biologically relevant peptides.;Chapter 2 describes the rigidity studies used to support a model in which Abc2K oligomers are relatively straight and rigid. The question of rigidity is first addressed by way of molecular modeling studies. Fluorescence resonance energy transfer (FRET) experiments of Abc2K oligomers are then described and will show that Abc2K oligomers behave as rigid rods with a length of 1.0 nm per monomer unit. Finally, Chapter 2 describes my work involving TEM and AFM imaging of supramolecular assemblies that are formed from individual Abc2K oligomers.;Chapter 3 describes how variants of the Abc2K building block, m-Abc2K and o-Abc 2K, can be combined to create various types of molecular architectures, such as angled molecular rods and shape-persistent macrocycles of shapes that resemble triangles, parallelograms, and hexagons.
机译:本文共分三章,涉及纳米级建筑模块的设计和合成。第1章介绍了基于氨基联苯羧酸(Abc)的氨基酸的发展及其在分子棒合成中的应用。本章从为在亲脂性有机溶剂(AbcR)中的溶解性而设计的Abc组成部分开始,以水溶性Abc类似物Abc2K的开发结束。第1章重点介绍了从可以在有机溶剂中溶解的含有脂族侧链[Boc-(Abc R)n-OR,n = 1-4]的分子棒到含有带电部分的分子棒[H-(AbcK )n-NH2,n = 1-5和H-(Abc2K)n-NH 2,n = 1-10],可溶于水。第1章介绍Abc 2K低聚物,作为一类新型的水溶性分子棒,可以精确精确地定义的长度合成,至少以10 nm的长度以1 nm的增量合成。将证明受保护的结构单元的合成以及该结构单元与标准固相肽合成技术的相容性。也将证明未保护的水溶性低聚物与标准分析纯化和表征技术的相容性。最后,本章以关于Abc2K氨基酸在生物学上的应用为结尾,讨论了如何将它们与α-氨基酸结合以用作各种生物学相关肽之间的刚性连接体。第二章介绍了用于支持abc2K氨基酸的刚性研究。 Abc2K低聚物相对笔直且刚性的模型。刚度问题首先通过分子模型研究解决。然后描述了Abc2K低聚物的荧光共振能量转移(FRET)实验,结果表明Abc2K低聚物表现为刚性棒,每个单体单元的长度为1.0 nm。最后,第2章介绍了我的工作,涉及由单个Abc2K低聚物形成的超分子组装体的TEM和AFM成像;第3章介绍了如何将Abc2K结构单元的变体m-Abc2K和o-Abc 2K结合起来以创建各种类型的分子结构,例如成角度的分子棒和形状持久的形状类似于三角形,平行四边形和六边形的大环。

著录项

  • 作者

    Gothard, Chris M.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Chemistry Organic.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 439 p.
  • 总页数 439
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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