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Palladium-catalyzed C-N cross-coupling reactions toward the synthesis of drug-like molecules

机译:钯催化的C-N交叉偶联反应,用于合成药物样分子

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摘要

The development of methodologies for C-N bond formation reactions is an important scientific challenge because of many academic and industrial applications. This work will focus particularly on palladium-catalyzed cross-couplings of amine-containing compounds with aryl halides. The scope of the BrettPhos precatalyst for the cross-coupling of ortho-substituted aryl iodides with amides is studied using substrates with a variety of functional groups. Due to potential metal-chelating issues with some of the substrates used in this study, a proposed ligand synthesis is discussed in which one of the methoxy groups of BrettPhos is replaced with a morpholine capable of occupying palladium's open coordination site during its catalytic cycle. A final C-N bond formation study focuses on the cross-coupling of aryl halides with amidine salts. For this cross-coupling, a methodology has been developed that can be applied to various electron-rich, electron-poor, and electron-neutral substrates. Furthermore, the products of this cross-coupling can be used for a subsequent electrocyclization through a reaction with aldehyde, demonstrating that a relatively simple two-pot methodology can be used to make relatively complex substrates with pharmaceutical applications. Both amides and amidines are common moieties in drug-like molecules because of the various biological activities of these functional groups. Potential medicinal applications of the developed cross-coupling of amidine salts with aryl halides methodology are described. Thus, methodologies for various palladium-catalyzed, C-N cross-couplings as well as a potential ligand synthesis to be used for palladium catalysis are herein discussed.
机译:由于许多学术和工业应用,用于C-N键形成反应的方法学的发展是重要的科学挑战。这项工作将特别关注钯催化的含胺化合物与芳基卤化物的交叉偶联。使用具有各种官能团的底物研究了BrettPhos预催化剂用于邻位取代的芳基碘化物与酰胺的交叉偶联的范围。由于本研究中使用的某些底物存在潜在的金属螯合问题,因此讨论了拟议的配体合成,其中BrettPhos的一个甲氧基被能够在其催化循环中占据钯开放式配位位点的吗啉取代。最终的C-N键形成研究重点在于芳基卤化物与am盐的交叉偶联。对于这种交叉耦合,已开发出一种可应用于各种富电子,贫电子和电子中性基板的方法。此外,这种交叉偶联的产物可通过与醛的反应用于随后的电环化,表明相对简单的两锅法可用于制备药物应用相对复杂的底物。由于这些官能团的各种生物学活性,酰胺和am都是药物样分子中的常见部分。描述了开发的of盐与芳基卤化物方法交叉偶联的潜在医学应用。因此,本文讨论了用于各种钯催化的C-N交叉偶联的方法以及用于钯催化的潜在配体合成。

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    McAvoy Camille Z;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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