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Strain release driven reactivity of bicyclobutanes and cyclopropenyl ketones and studies towards understanding the role of helicity in salen catalysis.

机译:应变释放驱动双环丁烷和环丙烯基酮的反应性,并进行研究以了解螺旋度在萨伦催化中的作用。

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My doctoral research in the laboratories of Joseph Fox at the University of Delaware has been multidisciplinary in nature. The results described in this dissertation span across streamlining multistep syntheses, synthetic methods development and exploring chemical biology.;Metal--salen catalysts have emerged as an important class of catalysts in enantioselective synthesis. An ongoing area of interest in the Fox Lab has been to study in detail the mode by which the catalysts, with their chiral, helical organic frameworks impart enantioselectivity to reactions. One of these catalysts was synthesized via a 15 step synthesis and has been used as a probe to understand the mechanistic origin of asymmetric induction in metal-salen catalyzed reactions. As the synthesis of this mechanistic probe was long, I developed a method to streamline the efficiency of the synthesis. These efforts will be discussed in the first chapter.;Chapter two focuses on the development of synthetic methods to allow for the enantioselective bicyclobutanation/homoconjugate addition of a range of heteroatomic nucleophiles as a method for rapidly accessing strereochemically defined cyclobutanes. Optimization of the addition of azides to bicyclobutanes led to the discovery of a new, highly soluble and nucleophilic azide source. Efforts to probe the mechanism of the azide addition reaction are discussed.;Cysteine alkylation represents one of the most broadly useful methods for protein modification, combining the merits of site selectivity with the ability to modify a native protein. Cysteine-modified proteins span a broad range of applications, including protein-drug conjugation, nuclear medicine, and materials science. Chapter three details studies surrounding the development of a new class of cysteine alkylating agents based on cyclopropenyl ketones. Using strain as a design principle, it was hypothesized that the significant release of strain energy (∼27 kcal/mol) upon thiol alkylation would result in an addition reaction that is both fast and irreversible. Results detailed demonstrate that cyclopropenyl ketones are viable alternatives to maleimide reagents, which though widely used are known to form unstable thiol conjugates.
机译:我在特拉华大学约瑟夫·福克斯实验室的博士研究本质上是多学科的。本文描述的结果涵盖了简化的多步合成,合成方法的开发和化学生物学的探索。金属-salen催化剂已成为对映选择性合成中的重要一类催化剂。 Fox Lab正在进行的研究领域是详细研究催化剂及其手性,螺旋有机骨架赋予反应对映选择性的方式。这些催化剂中的一种是通过15步合成法合成的,已用作了解金属盐催化反应中不对称诱导机理的探针。由于这种机械探针的合成时间很长,因此我开发了一种简化合成效率的方法。这些工作将在第一章中讨论。第二章着眼于合成方法的发展,以允许对映选择性的双环丁烷/同质共轭物添加一系列杂原子亲核试剂,以作为一种快速获得由立体化学方法定义的环丁烷的方法。优化向双环丁烷中添加叠氮化物的方法导致发现了新的,高度可溶且亲核的叠氮化物来源。半胱氨酸烷基化代表了最广泛有用的蛋白质修饰方法之一,结合了位点选择性和修饰天然蛋白质的能力。半胱氨酸修饰的蛋白质具有广泛的应用,包括蛋白质-药物结合,核医学和材料科学。第三章详细研究了基于环丙烯基酮的新型半胱氨酸烷基化剂的开发。使用应变作为设计原理,假设硫醇烷基化后显着释放应变能(约27 kcal / mol)将导致加成反应既快速又不可逆。详细的结果表明,环丙烯基酮是马来酰亚胺试剂的可行替代品,尽管已被广泛使用,但形成不稳定的硫醇偶联物。

著录项

  • 作者

    Smith, Natalee Jo-Ann.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Analytical chemistry.;Organic chemistry.;Inorganic chemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 240 p.
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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