NMR Research Centre, Indian Institute of Science, Bangalore 560012, India; Department of Physics, Indian Institute of Science, Bangalore 560012, India.
NMR Research Centre, Indian Institute of Science, Bangalore 560012, India.
J Magn Reson. 2018 Nov;296:181-187. doi: 10.1016/j.jmr.2018.09.011. Epub 2018 Sep 24.
Polarization-inversion (PI) has been applied to proton magic angle spinning (MAS) NMR spectra recorded under fast MAS conditions. The combination of cross-polarization (CP) from carbon to proton and subsequent polarization-inversion produces strong oscillatory behavior in the proton signal intensities at high MAS speeds of 60 kHz. It is observed that by a suitable choice of the polarization-inversion time, a proton spectrum free of methylene and methine protons can be obtained. Such a spectrum, on the one hand, increases the resolution of the crowded proton spectrum and on the other hand provides exclusively chemical shifts of protons such as NH, OH and SH which might otherwise overlap with carbon attached protons. The oscillations observed during PI can also be used to estimate the dipolar coupling between proton and carbon by Fourier transformation of data acquired at equally incremented time periods. The utility of the above ideas has been demonstrated on a set of molecules with both C labeled and C in natural abundance.
极化反转(PI)已应用于在快速 MAS 条件下记录的质子魔角旋转(MAS)NMR 谱。碳到质子的交叉极化(CP)与随后的极化反转相结合,在 60 kHz 的高 MAS 速度下,质子信号强度会产生强烈的振荡行为。结果表明,通过适当选择极化反转时间,可以获得无亚甲基和次甲基质子的质子谱。这样的谱图一方面增加了拥挤质子谱的分辨率,另一方面提供了 NH、OH 和 SH 等质子的化学位移,否则这些质子的化学位移可能会与与碳相连的质子重叠。在 PI 期间观察到的振荡也可以通过对在等时间增量处采集的数据进行傅里叶变换来估计质子和碳之间的偶极耦合。在一组同时含有 C 标记和自然丰度 C 的分子上验证了上述想法的实用性。