A Simple Tool to Benchmark Reactivity in Asymmetric Catalysis

IF 1.7 4区 化学 Q3 CHEMISTRY, ORGANIC Synlett Pub Date : 2024-03-21 DOI:10.1055/s-0042-1751576
Alberto Muñoz, Tomislav Rovis
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Abstract

Herein, we report a simple and noninvasive experimental protocol in which a series of relative reaction rates may be obtained by way of single competition experiments. This approach permits a quantitative comparison of any given number of chiral catalysts relative to a ‘benchmarking’ chiral catalyst – a particularly useful tool since catalyst design and selection have remained largely dependent on chemical intuition. We apply this benchmarking approach towards an asymmetric N-heterocyclic carbene (NHC) catalyzed intramolecular Stetter reaction as a proof-of-concept study. In doing so, we demonstrate a rapid method to assess the complex interplay between catalyst reactivity and stereoelectronic effects – an analytical approach that has heretofore not been attempted for NHCs. To showcase the generality of this method, we apply it to an enantioselective Rh(I)-catalyzed [2+2+2] cycloaddition of alkenyl isocyanates and aryl alkynes for a series of chiral phosphoramidite ligands. The results described herein demonstrate that this inexpensive and easily adoptable protocol can reveal complex yet subtle steric and stereoelectronic effects of vastly different chiral catalyst structures, which can further aid with catalyst development and selection for a clearly defined application.

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不对称催化反应基准的简单工具
在此,我们报告了一种简单、非侵入性的实验方案,通过该方案,可以通过单次竞争实验获得一系列相对反应速率。由于催化剂的设计和选择在很大程度上仍然依赖于化学直觉,因此这种方法可以将任意给定数量的手性催化剂与 "基准 "手性催化剂进行定量比较,是一种特别有用的工具。作为概念验证研究,我们将这种基准方法应用于不对称 N-杂环碳烯 (NHC) 催化的分子内斯泰特反应。在此过程中,我们展示了一种快速评估催化剂反应性和立体电子效应之间复杂相互作用的方法--这是一种迄今为止尚未尝试过的 NHC 分析方法。为了展示这种方法的通用性,我们将其应用于一系列手性磷酰胺配体的对映体选择性 Rh(I)- 催化异氰酸烯酯和芳基炔的 [2+2+2] 环加成反应。本文所描述的结果表明,这种成本低廉、易于采用的方案可以揭示差异巨大的手性催化剂结构的复杂而微妙的立体和立体电子效应,从而进一步帮助催化剂的开发和选择,以实现明确的应用。
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来源期刊
Synlett
Synlett 化学-有机化学
CiteScore
3.40
自引率
5.00%
发文量
369
审稿时长
1 months
期刊介绍: SYNLETT is an international journal reporting research results and current trends in chemical synthesis in short personalized reviews and preliminary communications. It covers all fields of scientific endeavor that involve organic synthesis, including catalysis, organometallic, medicinal, biological, and photochemistry, but also related disciplines and offers the possibility to publish scientific primary data.
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