Solid-state heteronuclear multiple-quantum spectroscopy under a magic-angle spinning frequency of 150 kHz
Chemical Physics
2022-04-07 v1 Quantum Physics
Abstract
We hereby demonstrate that 1H detected 15N-1H heteronuclear multiple-quantum spectroscopy can be carried out at a magic angle spinning frequency of 150 kHz. While the 15N-1H multiple-quantum coherences can be directly excited from the dipolar order created by the method of adiabatic demagnetization in the rotating frame, it is technically more advantageous to acquire the chemical shift evolution of the heteronuclear multiple-quantum coherence by two separate chemical shift evolution periods for 1H and 15N. We also show that the heteronuclear multiple-quantum correlation spectrum can be obtained by shearing the corresponding heteronuclear single-quantum correlation spectrum.
Keywords
Cite
@article{arxiv.2204.02589,
title = {Solid-state heteronuclear multiple-quantum spectroscopy under a magic-angle spinning frequency of 150 kHz},
author = {Eric Chung-Yueh Yuan and Po-Wen Chen and Shing-Jong Huang and Mai-Liis Org and Ago Samoson and Jerry Chun Chung Chan},
journal= {arXiv preprint arXiv:2204.02589},
year = {2022}
}
Comments
27 pages, 9 figures and 3 supporting figures