University of Oulu

Urbańczyk, Mateusz; Shchukina, Alexandra; Kaźmierczak, Magdalena; Gołowicz, Dariusz; Kazimierczuk, Krzysztof (2020) Software for reaction monitoring by NMR : acquisition and processing of time-resolved 2D spectra. G.I.T. Laboratory Journal 6/2020, 32-33.

Software for reaction monitoring by NMR : acquisition and processing of time-resolved 2D spectra

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Author: Urbańczyk, Mateusz1,2; Shchukina, Alexandra1; Kaźmierczak, Magdalena3;
Organizations: 1University of Warsaw, Centre of New technologies, Banacha 2C, 02 097 Warsaw, Poland
2NMR Resear ch Unit University of Oulu 90014 Oulu Finland.
3Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00 664 Warsaw, Poland
4Faculty of Chemistry, University of Warsaw, Pasteura 1, Warsaw, Poland 02 093
Format: article
Version: accepted version
Access: open
Online Access: PDF Full Text (PDF, 0.5 MB)
Persistent link: http://urn.fi/urn:nbn:fi-fe2020061543271
Language: English
Published: John Wiley & Sons, 2020
Publish Date: 2020-06-15
Description:

Abstract

Nuclear magnetic resonance (NMR) spectroscopy is a main workhorse in the analysis of molecular structures. It can also visualize their dynamic changes, thus serving as a great reaction-monitoring tool. Here, we present a software package allowing to set up and process data from several interleaved time-resolved two-dimensional (2D) NMR spectra, extending the amount of information provided by the conventional approach based on 1D spectra.

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Series: G.I.T. laboratory journal
ISSN: 1611-6038
ISSN-L: 1611-6038
Volume: 24
Issue: 2
Pages: 32 - 33
Type of Publication: D1 Article in a trade journal
Field of Science: 114 Physical sciences
116 Chemical sciences
Subjects:
Copyright information: © 2020 John Wiley & Sons, Inc. This is the peer reviewed version of the following article: Urbańczyk, Mateusz; Shchukina, Alexandra; Kaźmierczak, Magdalena; Gołowicz, Dariusz; Kazimierczuk, Krzysztof (2020) Software for reaction monitoring by NMR : acquisition and processing of time-resolved 2D spectra. G.I.T. Laboratory Journal 6/2020, 32-33, which has been published in final form at https://analyticalscience.wiley.com/do/10.1002/was.00060008/full/glj0220_webdaten.pdf.