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Harnessing polarisation transfer to indazole and imidazole through signal amplification by reversible exchange to improve their NMR detectability

机译:通过可逆交换通过信号放大来利用极化转移至吲唑和咪唑以提高其NMR检测能力

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摘要

The signal amplification by reversible exchange (SABRE) approach has been used to hyperpolarise the substrates indazole and imidazole in the presence of the co‐ligand acetonitrile through the action of the precataysts [IrCl(COD)(IMes)] and [IrCl(COD)(SIMes)]. 2H‐labelled forms of these catalysts were also examined. Our comparison of the two precatalysts [IrCl(COD)(IMes)] and [IrCl(COD)(SIMes)], coupled with 2H labelling of the N‐heterocyclic carbene and associated relaxation and polarisation field variation studies, demonstrates the critical and collective role these parameters play in controlling the efficiency of signal amplification by reversible exchange. Ultimately, with imidazole, a 700‐fold1H signal gain per proton is produced at 400 MHz, whilst for indazole, a 90‐fold increase per proton is achieved. The co‐ligand acetonitrile proved to optimally exhibit a 190‐fold signal gain per proton in these measurements, with the associated studies revealing the importance the substrate plays in controlling this value. Copyright © 2017 The Authors. Magnetic Resonance in Chemistry published by John Wiley & Sons Ltd.
机译:可逆交换信号放大(SABRE)方法已用于在共配体乙腈存在下通过前催化剂[IrCl(COD)(IMes)]和[IrCl(COD)的作用对底物吲唑和咪唑进行超极化(SIMes)]。还检查了这些催化剂的 2 H标记形式。我们对两种预催化剂[IrCl(COD)(IMes)]和[IrCl(COD)(SIMes)]的比较,以及N杂环卡宾的 2 H标记以及相关的弛豫和极化场变异研究证明了这些参数在通过可逆交换控制信号放大效率中所起的关键和集体作用。最终,使用咪唑在400MHz时每个质子产生700倍 1 H信号增益,而对于吲唑,每个质子获得90倍的增加。在这些测量中,共配体乙腈被证明可以最佳地表现出每个质子190倍的信号增益,相关研究表明底物在控制该值方面发挥着重要作用。版权所有©2017作者。 John Wiley&Sons Ltd.出版的《化学中的磁共振》。

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