School of Chemistry, University of Melbourne, Victoria, 3010, Australia.
Bio21 Institute of Molecular Science and Biotechnology, The University of Melbourne, Victoria, 3010, Australia.
Mass Spectrom Rev. 2021 Nov;40(6):782-810. doi: 10.1002/mas.21654. Epub 2020 Sep 23.
Carboxylic acids are valuable organic substrates as they are widely available, easy to handle, and exhibit structural and functional variety. While they are used in many standard synthetic protocols, over the past two decades numerous studies have explored new modes of metal-mediated reactivity of carboxylic acids and their derivatives. Mass spectrometry-based studies can provide fundamental mechanistic insights into these new modes of reactivity. Here gas-phase models for the following catalytic transformations of carboxylic acids and their derivatives are reviewed: protodecarboxylation; dehydration; decarbonylation; reaction as coordinated bases in C-H bond activation; remote functionalization and decarboxylative C-C bond coupling. In each case the catalytic problem is defined, insights from gas-phase studies are highlighted, comparisons with condensed-phase systems are made and perspectives are reached. Finally, the potential role for mechanistic studies that integrate both gas- and condensed-phase studies is highlighted by recent studies on the discovery of new catalysts for the selective decomposition of formic acid and the invention of the new extrusion-insertion class of reactions for the synthesis of amides, thioamides, and amidines. © 2020 John Wiley & Sons Ltd. Mass Spec Rev.
羧酸是有价值的有机底物,因为它们广泛存在、易于处理,并且具有结构和功能多样性。虽然它们被用于许多标准的合成方案中,但在过去的二十年中,许多研究都探索了羧酸及其衍生物的新型金属介导反应性模式。基于质谱的研究可以为这些新反应性模式提供基本的机理见解。本文综述了以下羧酸及其衍生物的催化转化的气相模型:脱羧基;脱水;脱羰基;作为 C-H 键活化中配位碱的反应;远程官能化和脱羧 C-C 键偶联。在每种情况下,都定义了催化问题,突出了气相研究的见解,对与凝聚相体系的比较,并得出了展望。最后,通过对甲酸选择性分解的新型催化剂的发现和新型挤出-插入类酰胺、硫酰胺和脒合成反应的发明的最新研究,强调了整合气-相和凝聚相研究的机理研究的潜在作用。