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New approaches to heterocyclic scaffolds using Diels-Alder chemistry.

机译:使用Diels-Alder化学方法制备杂环支架的新方法。

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摘要

Isatin-derived 1,2,4-triazines were employed as electron deficient azadienes in inverse electron demand Diels-Alder (IEDDA) chemistry with tethered alkynyl dienophiles, leading to biologically interesting heterocyclic lactam- and lactone-annulated alpha-carbolines in excellent yields under microwave promotion. The chemistry scope was probed using various alkynyl amines and alcohols, and the impact of the tether length between the triazines and the dienophiles was also investigated. This IEDDA methodology was subsequently applied to the synthesis of an alpha-carboline library, producing eighty-eight members starting with various isatin-derived triazines, indole-derivatives, and propargylamine derivatives.;In a related project, a regioselective Lewis acid catalyzed amidation of dimethyl 5H-pyridazino[4,5-b]indole-1,4-dicarboxylate was established to selectively direct the amidation to occur at either the C1 or C4 ester positions. This chemistry was then applied to tether dienophiles to the pyridazinoindole ring via an amide linkage. Subsequent IEDDA cycloadditions of these pyridazinoindole/dienophile pairs afforded carbazoles in excellent yields under thermal conditions. The scope of this chemistry scope was also thoroughly probed, leading to a library of one hundred and eighty-eight members.;The synthesis of a third heterocyclic scaffold using Diels-Alder chemistry was also accomplished. Asymmetric cycloadditions of anthrone with various maleimides were successfully achieved using different chiral organocatalysts. The identity of the optimal catalytic system depended upon the dienophile, with good enantioselectivities achieved (78-83% ee). This chemistry was successfully applied as the stereocontrol element in a Diels-Alder/Functional Group Transformation/retro-Diels-Alder sequence to prepare alkaloidal scaffolds in an optically enriched form.
机译:Isatin衍生的1,2,4-三嗪被用作逆电子需量Diels-Alder(IEDDA)化学反应中的缺电子氮杂二烯,与束缚的炔基二烯亲和体结合,从而在生物学上引起了人们关注的杂环内酰胺和内酯环氧化的α-咔啉。微波炉促销。使用各种炔基胺和醇探索了化学范围,还研究了三嗪和亲二烯体之间的系链长度的影响。该IEDDA方法随后被用于合成α-咔啉文库,产生88个成员,这些成员从各种伊斯丁衍生的三嗪,吲哚衍生物和炔丙基胺衍生物开始;在一个相关项目中,区域选择性路易斯酸催化了建立了5H-吡啶并[2,5-b]吲哚-1,4-二羧酸二甲酯二甲基酯,以选择性地指导酰胺化反应在C1或C4酯位置发生。然后将这种化学方法用于将双亲二烯体通过酰胺键连接到哒嗪并吲哚环上。这些哒嗪并吲哚/亲二烯体对的随后的EDADA环加成在热条件下以优异的产率提供了咔唑。还对该化学范围的范围进行了彻底的探索,从而建立了一个包含一百八十八个成员的文库。使用Diels-Alder化学方法完成了第三个杂环骨架的合成。使用不同的手性有机催化剂成功地实现了蒽与各种马来酰亚胺的不对称环加成反应。最佳催化体系的身份取决于亲二烯体,并具有良好的对映选择性(78-83%ee)。该化学方法已成功地用作Diels-Alder /官能团转化/ retro-Diels-Alder序列中的立体控制元素,从而制备了光学富集形式的生物碱支架。

著录项

  • 作者

    Ma, Zhiyuan.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Chemistry Organic.;Chemistry General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 336 p.
  • 总页数 336
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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