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Iridium N-Heterocyclic Carbene Complexes as Efficient Catalysts for Magnetization Transfer from para-Hydrogen

机译:铱N-杂环碳烯络合物作为从对氢磁化转移的有效催化剂

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摘要

While the characterization of materials by NMR is hugely important in the physical and biological sciences, it also plays a vital role in medical imaging. This success is all the more impressive because of the inherently low sensitivity of the method. We establish here that [Ir(H)2(IMes)(py)3]Cl undergoes both pyridine (py) loss as well as the reductive elimination of H2. These reversible processes bring para-H2 and py into contact in a magnetically coupled environment, delivering an 8100-fold increase in 1H NMR signal strength relative to non-hyperpolarized py at 3 T. An apparatus that facilitates signal averaging has been built to demonstrate that the efficiency of this process is controlled by the strength of the magnetic field experienced by the complex during the magnetization transfer step. Thermodynamic and kinetic data combined with DFT calculations reveal the involvement of [Ir(H)2(η2-H2)(IMes)(py)2]+, an unlikely yet key intermediate in the reaction. Deuterium labeling yields an additional 60% improvement in signal, an observation that offers insight into strategies for optimizing this approach.
机译:尽管通过NMR表征材料在物理和生物科学中极为重要,但它在医学成像中也起着至关重要的作用。由于该方法固有的低灵敏度,因此其成功令人印象深刻。我们在这里建立[Ir(H)2(IMes)(py)3] Cl经历吡啶(py)的损失以及H2的还原消除。这些可逆过程使对H2和py在磁耦合环境中接触,相对于3 T下非超极化py, 1 H NMR信号强度提高了8100倍。信号平均已建立,以证明该过程的效率受复合物在磁化转移步骤中所经历的磁场强度的控制。热力学和动力学数据结合DFT计算显示[Ir(H)2(η 2 -H2)(IMes)(py)2] + 的参与还是反应的关键中间体。氘标记可以使信号质量进一步提高60%,这一观察结果为优化此方法的策略提供了见识。

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