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首页> 外文期刊>Chemistry: A European journal >Computational (DFT) and Experimental (EXAFS) Study of the Interaction of [Ir(IMes)(H)(2)(L)(3)] with Substrates and Co-substrates Relevant for SABRE in Dilute Systems
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Computational (DFT) and Experimental (EXAFS) Study of the Interaction of [Ir(IMes)(H)(2)(L)(3)] with Substrates and Co-substrates Relevant for SABRE in Dilute Systems

机译:[Ir(IMes)(H)(2)(L)(3)]与稀体系中与SABRE相关的底物和共底物相互作用的计算(DFT)和实验(EXAFS)研究

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摘要

Signal amplification by reversible exchange (SABRE) is an emerging hyperpolarization method in NMR spectroscopy, in which hyperpolarization is transferred through the scalar coupling network of para-hydrogen derived hydrides in a metal complex to a reversibly bound substrate. Substrates can even be hyperpolarized at concentrations below that of the metal complex by addition of a suitable co-substrate. Here we investigate the catalytic system used for trace detection in NMR spectroscopy with [Ir(IMes)(H)(2)(L)(3)](+) (IMes=1,3-dimesitylimidazol-2-ylidene) as catalyst, pyridine as a substrate and 1-methyl-1,2,3-triazole as co-substrate in great detail. With density functional theory (DFT), validated by extended X-ray absorption fine structure (EXAFS) experiments, we provide explanations for the relative abundance of the observed metal complexes, as well as their contribution to SABRE. We have established that the interaction between iridium and ligands cis to IMes is weaker than that with the trans ligand, and that in mixed complexes with pyridine and triazole, the latter preferentially takes up the trans position.
机译:通过可逆交换(SABRE)进行的信号放大是NMR光谱学中一种新兴的超极化方法,其中超极化通过金属络合物中对氢衍生的氢化物的标量耦合网络转移至可逆结合的底物。通过加入合适的共基质,甚至可以使基质在低于金属络合物的浓度下超极化。在这里,我们研究用于以[Ir(IMes)(H)(2)(L)(3)](+)(IMes = 1,3-dimesitylimidazol-2-ylidene)为催化剂的NMR光谱中痕量检测的催化系统。 ,以吡啶为底物,以1-甲基-1,2,3-三唑为共底物。借助扩展的X射线吸收精细结构(EXAFS)实验验证的密度泛函理论(DFT),我们为观察到的金属配合物的相对丰度及其对SABRE的贡献提供了解释。我们已经确定,铱和配体顺式与IMes的相互作用比与反式配体的相互作用弱,并且在与吡啶和三唑的混合配合物中,后者优先占据反式位置。

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