COK-kat, Centre for Surface Chemistry and Catalysis-Characterisation and Application Team, KU Leuven, Celestijnenlaan 200F, box 2461, B-3001, Leuven, Belgium.
NMRCoRe, NMR/X-Ray platform for Convergence Research, KU Leuven, Celestijnenlaan 200F, box 2461, 3001, Leuven, Belgium.
Chemphyschem. 2021 Jun 16;22(12):1170-1177. doi: 10.1002/cphc.202100079. Epub 2021 Jun 1.
Symmetry breaking of parahydrogen using iridium catalysts converts singlet spin order into observable hyperpolarization. In this contribution, iridium catalysts are designed to exhibit asymmetry in their hydrides, regulated by in situ generation of deuterated ammonia governed by ammonium buffers. The concentrations of ammonia (N) and pyridine (P) provide a handle to generate a variety of stereo-chemically asymmetric N-heterocyclic carbene iridium complexes, ligating either [3xP], [2xP;N], [P;2xN] or [3xN] in an octahedral SABRE type configuration. The non-equivalent hydride positions, in correspondence with the ammonium buffer solutions, enables to extend singlet-triplet or mixing at high magnetic field and experimentally induce prolonged generation of non-equilibrium longitudinal two-spin order. This long-lasting magnetization can be exploited in hyperpolarized 2D-OPSY-COSY experiments providing direct structural information on the catalyst using a single contact with parahydrogen. Separately, field cycling revealed hyperpolarization properties in low-field conditions. Controlling catalyst stereochemistry by introducing small and deuterated ligands, such as deuterated ammonia, simplifies the spin-system. This is shown to unify experimental and theoretically derived field-sweep experiments for four-spin systems.
使用铱催化剂打破仲氢的对称性将单重自旋态转化为可观测的超极化。在本研究中,铱催化剂的氢化物被设计为具有不对称性,由铵缓冲控制的氘化氨的原位生成来调节。氨(N)和吡啶(P)的浓度提供了一种手段,可以生成各种立体化学不对称的 N-杂环卡宾铱配合物,以八面体 SABRE 型构型连接[3xP]、[2xP;N]、[P;2xN]或[3xN]。与铵缓冲溶液相对应的非等效氢化物位置,能够扩展单重三重态或混合态在高磁场下,并在实验中诱导非平衡纵向双自旋态的长时间生成。这种持久的磁化可以在 hyperpolarized 2D-OPSY-COSY 实验中得到利用,该实验使用与仲氢的单次接触提供催化剂的直接结构信息。此外,场循环在低场条件下显示出极化性能。通过引入小的氘化配体,如氘化氨,控制催化剂的立体化学,可以简化自旋体系。这被证明可以统一四自旋体系的实验和理论推导的场扫描实验。