探测铱催化氢同位素交换反应中的底物结合和释放事件

IF 7.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Daria S. Timofeeva, William J. Kerr, David M. Lindsay and David J. Nelson
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引用次数: 0

摘要

定向的,金属催化的碳氢活化反应依赖于路易斯碱性官能团与金属中心的结合,以确保精确控制区域选择性。然而,结合金属中心过于强烈的基团有可能减少周转频率并抑制生产催化。在此,我们使用了铱催化氢同位素交换反应的动力学研究,以核磁共振光谱和质谱作为分析技术,研究了一系列具有代表性的单取代芳香体系的结合和释放行为。发现吡啶和嘧啶表现出异常行为,单结合/双标记过程占主导地位,或至少与结合/标记/解离途径竞争。相比之下,在其他导向基团(如酮、硝基、酯)中,观察到初始形成相当数量的d1-同位素,随后转化为相应的d2-同位素,这表明主要是结合/标记/解离途径。这些数据揭示了三种具有不同行为的底物,反应设计和优化需要采用不同的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Probing substrate binding and release events in iridium-catalysed hydrogen isotope exchange reactions†

Probing substrate binding and release events in iridium-catalysed hydrogen isotope exchange reactions†

Probing substrate binding and release events in iridium-catalysed hydrogen isotope exchange reactions†

Directed, metal-catalysed C–H activation reactions rely on the binding of a Lewis basic functional group to the metal centre to ensure precise control of regioselectivity. However, groups that bind the metal centre too strongly have the potential to decrease turnover frequency and inhibit productive catalysis. Herein, we have used kinetic studies of iridium-catalysed hydrogen isotope exchange reactions, with NMR spectroscopy and mass spectrometry as the analytical techniques, to investigate the binding and release behaviour of a representative series of monosubsituted aromatic systems bearing a Lewis basic directing group. It was found that pyridine and pyrimidine exhibit anomalous behaviour, with a single-binding/dual labelling process dominating, or at least being competitive with, a binding/labelling/dissociation pathway. In contrast, with other directing groups (e.g. ketone, nitro, ester) initial formation of an appreciable population of d1-isotopologue is observed, and this is subsequently converted to the corresponding d2-isotopologue, suggesting a mainly binding/labelling/dissociation pathway. These data reveal three classes of substrate with rather different behaviour and for which reaction design and optimisation needs to be approached rather differently.

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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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