Türschmann P, Colell J, Theis T, Blümich B, Appelt S
Institut für Technische und Markomolekulare Chemie, RWTH Aachen University, 52056 Aachen, Germany.
Phys Chem Chem Phys. 2014 Aug 7;16(29):15411-21. doi: 10.1039/c4cp01807a. Epub 2014 Jun 20.
Nuclear magnetic resonance (NMR) spectra of spin systems polarized either thermally or by parahydrogen exhibit strikingly different field dependencies. Thermally polarized spin systems show the well-known roof effect, observed when reducing magnetic field strengths which precludes the independent determination of chemical shift differences and J-coupling constants at low-fields. Quantum mechanical analysis of the NMR spectra with respect to polarization method, pulsed state preparation, and transition probabilities reveals that spectra of parahydrogen polarized systems feature an "inverse roof effect" in the regime where the chemical shift difference δν is smaller than J. This inverse roof effect allows for the extraction of both J-coupling and chemical shift information down to very low fields. Based on a two-spin system, the observed non-linear magnetic field dependence of the splitting of spectral lines is predicted. We develop a general solution for the steady state density matrix of a parahydrogen polarized three-spin system including a heteronucleus which allows explaining experimentally observed (1)H spectra. The analysis of three-spin density matrix illustrates two pathways for an efficient polarization transfer from parahydrogen to (13)C nuclei. Examination of the experimental data facilitates the extraction of all relevant NMR parameters using single-scan, high-resolution (1)H and (13)C NMR spectroscopy at low fields at a fraction of the cost associated with cryogenically cooled high-field NMR spectrometers.
通过热极化或仲氢极化的自旋系统的核磁共振(NMR)谱表现出显著不同的场依赖性。热极化自旋系统显示出众所周知的屋顶效应,当降低磁场强度时会观察到这种效应,这使得在低场下无法独立测定化学位移差异和J耦合常数。对NMR谱关于极化方法、脉冲态制备和跃迁概率进行量子力学分析表明,仲氢极化系统的谱在化学位移差δν小于J的区域具有“反屋顶效应”。这种反屋顶效应允许在非常低的场下提取J耦合和化学位移信息。基于双自旋系统,预测了谱线分裂所观察到的非线性磁场依赖性。我们为包含异核的仲氢极化三自旋系统的稳态密度矩阵开发了一个通用解,这有助于解释实验观察到的¹H谱。对三自旋密度矩阵的分析说明了从仲氢到¹³C核的有效极化转移的两条途径。通过对实验数据的分析,使用单扫描、高分辨率¹H和¹³C NMR光谱在低场下能够以与低温冷却高场NMR光谱仪相关成本的一小部分提取所有相关的NMR参数。