Low-power broadband solid-state MAS NMR of 14N

被引:27
|
作者
Pell, Andrew J. [1 ,4 ]
Sanders, Kevin J. [2 ]
Wegner, Sebastian [3 ]
Pintacuda, Guido [2 ]
Grey, Clare P. [1 ,4 ]
机构
[1] Univ Cambridge, Dept Chem, Lensfield Rd, Cambridge CB2 1EW, England
[2] Univ Lyon, Ctr RMN Tres Hauts Champs, Inst Sci Analyt, CNRS,ENS Lyon,UCB Lyon 1, F-69100 Villeurbanne, France
[3] Bruker BioSpin GmbH, D-76287 Rheinstetten, Germany
[4] Stockholm Univ, Arrhenius Lab, Dept Mat & Environm Chem, SE-10691 Stockholm, Sweden
来源
JOURNAL OF CHEMICAL PHYSICS | 2017年 / 146卷 / 19期
基金
欧洲研究理事会;
关键词
SPIN QUADRUPOLAR NUCLEI; HYPERBOLIC SECANT PULSES; ADIABATIC PULSES; MAGNETIC-RESONANCE; SENSITIVITY ENHANCEMENT; PARAMAGNETIC SYSTEMS; OPERATOR-FORMALISM; ROTARY RESONANCE; ROTATING SOLIDS; SPECTROSCOPY;
D O I
10.1063/1.4983220
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We propose two broadband pulse schemes for N-14 solid-state magic-angle-spinning (MAS) nuclear magnetic resonance (NMR) that achieves (i) complete population inversion and (ii) efficient excitation of the double-quantum spectrum using low-power single-sideband-selective pulses. We give a comprehensive theoretical description of both schemes using a common framework that is based on the jolting-frame formalism of Caravatti et al. [J. Magn. Reson. 55, 88 (1983)]. This formalism is used to determine for the first time that we can obtain complete population inversion of N-14 under low-power conditions, which we do here using single-sideband-selective adiabatic pulses. It is then used to predict that double-quantum coherences can be excited using low-power single-sideband-selective pulses. We then proceed to design a new experimental scheme for double-quantum excitation. The final double-quantum excitation pulse scheme is easily incorporated into other NMR experiments, as demonstrated here for double quantum-single quantum N-14 correlation spectroscopy, and H-1-N-14 dipolar heteronuclear multiple-quantum correlation experiments. These pulses and irradiation schemes are evaluated numerically using simulations on single crystals and full powders, as well as experimentally on ammonium oxalate ((NH4)(2)C2O4) at moderate MAS and glycine at ultra-fast MAS. The performance of these new NMR methods is found to be very high, with population inversion efficiencies of 100% and double-quantum excitation efficiencies of 30%-50%, which are hitherto unprecedented for the low radiofrequency field amplitudes, up to the spinning frequency, that are used here. Published by AIP Publishing.
引用
收藏
页数:25
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