Correlation of high-field and zero- to ultralow-field NMR properties using 2D spectroscopy Научная публикация
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The Journal of Chemical Physics
ISSN: 0021-9606 |
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| Вых. Данные | Год: 2021, Том: 154, Номер: 14, Номер статьи : 144201, Страниц : 6 DOI: 10.1063/5.0039294 | ||||||||||||
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Реферат:
The field of zero- to ultralow-field (ZULF) nuclear magnetic resonance (NMR) is currently experiencing rapid growth, owing to progress in optical magnetometry and attractive features of ZULF-NMR such as low hardware cost and excellent spectral resolution achieved under ZULF conditions. In this work, an approach is proposed and demonstrated for simultaneous acquisition of ZULF-NMR spectra of individual 13C-containing isotopomers of chemical compounds in a complex mixture. The method makes use of fast field cycling such that the spin evolution takes place under ZULF conditions, whereas signal detection is performed in a high-field NMR spectrometer. This method has excellent sensitivity, also allowing easy assignment of ZULF-NMR spectra to specific analytes in the mixture. We demonstrate that the spectral information is the same as that given by ZULF-NMR, which makes the method suitable for creating a library of ZULF-NMR spectra of various compounds and their isotopomers. The results of the field-cycling experiments can be presented in a convenient way as 2D-NMR spectra with the direct dimension giving the high-field 13C-NMR spectrum (carrying the chemical-shift information) and the indirect dimension giving the ZULF-NMR spectrum (containing information about proton–carbon J-couplings). Hence, the method can be seen as a variant of heteronuclear J-resolved spectroscopy, one of the first 2D-NMR techniques.
Библиографическая ссылка:
Zhukov I.V.
, Kiryutin A.S.
, Yurkovskaya A.V.
, Blanchard J.W.
, Budker D.
, Ivanov K.L.
Correlation of high-field and zero- to ultralow-field NMR properties using 2D spectroscopy
The Journal of Chemical Physics. 2021. V.154. N14. 144201 :1-6. DOI: 10.1063/5.0039294 WOS OpenAlex
Correlation of high-field and zero- to ultralow-field NMR properties using 2D spectroscopy
The Journal of Chemical Physics. 2021. V.154. N14. 144201 :1-6. DOI: 10.1063/5.0039294 WOS OpenAlex
Даты:
| Поступила в редакцию: | 1 дек. 2020 г. |
| Принята к публикации: | 15 мар. 2021 г. |
| Опубликована online: | 9 апр. 2021 г. |
Идентификаторы БД:
| Web of science: | WOS:000639911900001 |
| OpenAlex: | W3107851782 |
Цитирование в БД:
| БД | Цитирований |
|---|---|
| OpenAlex | 7 |