首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Irreversible Catalyst Activation Enables Hyperpolarization and Water Solubility for NMR Signal Amplification by Reversible Exchange
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Irreversible Catalyst Activation Enables Hyperpolarization and Water Solubility for NMR Signal Amplification by Reversible Exchange

机译:不可逆的催化剂活化可通过可逆交换为NMR信号放大提供超极化和水溶性

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摘要

Activation of a catalyst [IrCl(COD)(IMes)] (IMes = 1,3-bis(2,4,6-trimethylphenyl)imidazol-2-ylidene; COD = cyclooctadiene)] for signal amplification by reversible exchange (SABRE) was monitored by in situ hyperpolarized proton NMR at 9.4 T. During the catalyst-activation process, the COD moiety undergoes hydrogenation that leads to its complete removal from the Ir complex. A transient hydride intermediate of the catalyst is observed via its hyperpolarized signatures, which could not be detected using conventional nonhyperpolarized solution NMR. SABRE enhancement of the pyridine substrate can be fully rendered only after removal of the COD moiety; failure to properly activate the catalyst in the presence of sufficient substrate can lead to irreversible deactivation consistent with oligomerization of the catalyst molecules. Following catalyst activation, results from selective RF-saturation studies support the hypothesis that substrate polarization at high field arises from nuclear cross-relaxation with hyperpolarized (1)H spins of the hydride/orthohydrogen spin bath. Importantly, the chemical changes that accompanied the catalyst's full activation were also found to endow the catalyst with water solubility, here used to demonstrate SABRE hyperpolarization of nicotinamide in water without the need for any organic cosolvent-paving the way to various biomedical applications of SABRE hyperpolarization methods.
机译:激活催化剂[IrCl(COD)(IMes)](IMes = 1,3-双(2,4,6-三甲基苯基)咪唑-2-亚基; COD =环辛二烯),用于通过可逆交换(SABRE)进行信号放大用9.4 T原位超极化质子NMR进行监测。在催化剂活化过程中,COD部分进行了氢化反应,从而使其完全从Ir络合物中除去。通过其超极化特征观察到催化剂的过渡氢化物中间体,使用常规的非超极化溶液NMR无法检测到。仅在去除COD部分后,才能充分实现吡啶底物的SABRE增强。在足够的底物存在下不能正确活化催化剂会导致不可逆的失活,这与催化剂分子的低聚反应相一致。催化剂活化后,选择性RF饱和研究的结果支持以下假说:高电场下的底物极化起因于氢化物/正氢旋转浴的超极化(1)H自旋核交叉弛豫。重要的是,还发现伴随催化剂完全活化的化学变化使催化剂具有水溶性,此处用于证明烟酰胺在水中的SABER超极化而无需任何有机助溶剂,为SABER超极化的各种生物医学应用铺平了道路方法。

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