Center for Integrated Protein Science Munich (CIPSM) at Department of Chemistry, Technical University of Munich (TUM), Lichtenbergstr. 4, 85747, Garching, Germany.
Department of Chemistry, Technical University of Munich (TUM), Lichtenbergstr. 4, 85747, Garching, Germany.
Angew Chem Int Ed Engl. 2018 Oct 26;57(44):14498-14502. doi: 10.1002/anie.201800220. Epub 2018 Apr 25.
NMR spectroscopy at ultra-high magnetic fields requires improved radiofrequency (rf) pulses to cover the increased spectral bandwidth. Optimized 90° pulse pairs were introduced as Ramsey-type cooperative (Ram-COOP) pulses for biomolecular NMR applications. The Ram-COOP element provides broadband excitation with enhanced sensitivity and reduced artifacts even at magnetic fields >1.0 GHz H Larmor frequency (23 T). A pair of 30 μs Ram-COOP pulses achieves an excitation bandwidth of 100 kHz with a maximum rf field of 20 kHz, more than three-fold improved compared to excitation by rectangular pulses. Ram-COOP pulses exhibit little offset-dependent phase errors and are robust to rf inhomogeneity. The performance of the Ram-COOP element is experimentally confirmed with heteronuclear multidimensional NMR experiments, applied to proteins and nucleic acids. Ram-COOP provides broadband excitation at low rf field strength suitable for application at current magnetic fields and beyond 23 T.
在超高磁场下进行核磁共振波谱学需要改进的射频(rf)脉冲来覆盖增加的光谱带宽。优化的 90°脉冲对被引入作为用于生物分子核磁共振应用的拉姆齐型合作(Ram-COOP)脉冲。Ram-COOP 元件提供宽带激发,具有更高的灵敏度和更少的伪影,即使在磁场>1.0 GHz 拉莫尔频率(23 T)下也是如此。一对 30 μs 的 Ram-COOP 脉冲实现了 100 kHz 的激发带宽,最大 rf 场为 20 kHz,与矩形脉冲相比,提高了三倍以上。Ram-COOP 脉冲表现出很小的与偏移相关的相位误差,并且对射频不均匀性具有鲁棒性。通过应用于蛋白质和核酸的异核多维 NMR 实验,实验证实了 Ram-COOP 元件的性能。Ram-COOP 在低 rf 场强度下提供宽带激发,适用于当前磁场和 23 T 以上的应用。