Reconstructing Reliable Powder Patterns from Spikelets (Q)CPMG NMR Spectra: Simplification of UWNMR Crystallography Analysis

Author:

Mahun AndriiORCID,Abbrent SabinaORCID,Czernek Jiri,Rohlicek Jan,Macková Hana,Ning Weihua,Konefał RafałORCID,Brus JiříORCID,Kobera LiborORCID

Abstract

Spikelets NMR spectra are very popular as they enable the shortening of experimental time and give the possibility to obtain required NMR parameters for nuclei with ultrawide NMR patterns. Unfortunately, these resulted ssNMR spectra cannot be fitted directly in common software. For this reason, we developed UWNMRSpectralShape (USS) software which transforms spikelets NMR patterns into single continuous lines. Subsequently, these reconstructed spectral envelopes of the (Q)CPMG spikelets patterns can be loaded into common NMR software and automatically fitted, independently of experimental settings. This allows the quadrupole and chemical shift parameters to be accurately determined. Moreover, it makes fitting of spikelets NMR spectra exact, fast and straightforward.

Funder

Czech Science Foundation

International Visegrad Fund

"e-Infrastruktura CZ

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference50 articles.

1. Nuclear Resonance Absorption in Hydrated Crystals: Fine Structure of the Proton Line

2. Nuclear Electric Quadrupole Interactions in Crystals

3. Nuclear quadrupole resonance spectroscopy. General principles

4. High Resolution NMR Spectroscopy in Solids;Mehring,1976

5. Solid-State NMR in Materials Science: Principles and Applications;Bakhmutov,2011

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