We describe a new technique for double-quantum excitation in magic-angle-spinning NMR of powdered solids. The technique is designed to efficiently excite double-quantum coherence in the vicinity of a rotational resonance condition. The offset from rotational resonance allows the double-quantum filte
Coherence Transfer Signals in the Rotational Resonance NMR of a Spinning Single Crystal
β Scribed by Oleg N Antzutkin; Malcolm H Levitt
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 68 KB
- Volume
- 147
- Category
- Article
- ISSN
- 1090-7807
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β¦ Synopsis
A recent analysis of rotational resonance lineshapes (M. Helmle et al., J. Magn. Reson. 140, 379-403, 1999) predicted the existence of coherence transfer signals, which are generated by mechanically induced coherence transfer during the detection process. These signals correspond to the generation of observable coherences at spin sites that have no magnetization at the beginning of the observation interval but which acquire coherence while the detection is underway. The coherence transfer signals disappear for powder samples in conventional magic-angle-spinning solid-state NMR experiments. In this Communication, we report the successful detection of coherence transfer signals in rotor-synchronized experiments performed on a single crystal of [1,2-(13)C(2)]glycine. Copyright 2000 Academic Press.
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## Abstract The unusual grinding effects observed in the 1D spin crossover polymer [FeL(bipy)]__~n~__ (**1**), with L being a tetradentate N~2~O~2~^2β^ coordinating Schiff base type ligand {(3,3β²)β[1,2βphenylenebis(iminomethylidyne)]bis(2,4βpentanedionato)(2β)β__N,Nβ²,O^2^,O^2^β²__} and bipy = 4,4β²βb