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Magnitudes and Orientations of Interaction Tensors Determined from Rotational Resonance MAS NMR Lineshapes of a Four-13C-Spin System

✍ Scribed by Stephan Dusold; Heidi Maisel; Angelika Sebald


Publisher
Elsevier Science
Year
1999
Tongue
English
Weight
200 KB
Volume
141
Category
Article
ISSN
1090-7807

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✦ Synopsis


Possibilities and limitations of iterative lineshape fitting approaches for the complete determination of magnitudes and orientations of NMR interaction tensors in a four-13 C-spin system from MAS NMR experiments are investigated. The availability of fast and numerically accurate computational methods is an important prerequisite. The model compound chosen for this investigation is the monoammonium salt of maleic acid. Various selectively and fully 13 C-labeled versions of this compound permit a stepwise reduction of the number of unknown parameters, necessary to fully describe the four-13 C-spin system in the uniformly 13 C-labeled maleate moiety. This stepwise procedure allows one to monitor reliability and accuracy of multiparameter fits of the four-13 C-spin system itself, as well as to characterize limitations and requirements for such fitting procedures. Satisfactory 1 Hdecoupling performance is an essential experimental requirement; TPPM decoupling yields n ‫؍‬ 1, 2 rotational resonance 13 C MAS NMR lineshapes suitable for analysis by iterative lineshape fitting methods. It is demonstrated that assumptions about "typical" chemical shielding tensor orientations, even if not deviating much from the real orientations, lead to severe errors in internuclear distance determinations.