proton nmr spectroscopy
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Author(s):  
Patricia de Castro Duarte ◽  
Rodrigo Martins Ribeiro ◽  
Alan Rodrigues Teixeira Machado ◽  
Rafael Resende Faleiros ◽  
Lúcia Pinheiro Santos Pimenta ◽  
...  

2021 ◽  
Vol 2 (1) ◽  
pp. 117-128
Author(s):  
Timothy J. Keller ◽  
Thorsten Maly

Abstract. The majority of low-field Overhauser dynamic nuclear polarization (ODNP) experiments reported so far have been 1D NMR experiments to study molecular dynamics and in particular hydration dynamics. In this work, we demonstrate the application of ODNP-enhanced 2D J-resolved (JRES) spectroscopy to improve spectral resolution beyond the limit imposed by the line broadening introduced by the paramagnetic polarizing agent. Using this approach, we are able to separate the overlapping multiplets of ethyl crotonate into a second dimension and clearly identify each chemical site individually. Crucial to these experiments is interleaved spectral referencing, a method introduced to compensate for temperature-induced field drifts over the course of the NMR acquisition. This method does not require additional hardware such as a field-frequency lock, which is especially challenging when designing compact systems.


2021 ◽  
Vol 96 ◽  
pp. 103706
Author(s):  
Nao Wu ◽  
Stéphane Balayssac ◽  
Gaëtan Assemat ◽  
Saïda Danoun ◽  
Sébastien Déjean ◽  
...  

2021 ◽  
Vol 93 (8) ◽  
pp. 3976-3986 ◽  
Author(s):  
Samantha Lodge ◽  
Philipp Nitschke ◽  
Torben Kimhofer ◽  
Julien Wist ◽  
Sze-How Bong ◽  
...  

2021 ◽  
Author(s):  
Timothy J. Keller ◽  
Thorsten Maly

Abstract. The majority of low-field Overhauser Dynamic Nuclear Polarization (ODNP) experiments reported so far have been 1D NMR experiments to study hydration dynamics. In this work, we demonstrate the application of ODNP-enhanced 2D J-resolved (JRES) spectroscopy to improve spectral resolution beyond the limit imposed by the line broadening introduced by the paramagnetic polarizing agent. Using this approach, we are able to separate the overlapping multiplets of ethyl crotonate into a 2nd dimension and clearly identify each chemical cite individually. Crucial to these experiments is interleaved spectral referencing, a method introduced to compensate for temperature induced field drifts over the course of the NMR acquisition. This method does not require additional hardware such as a field-frequency lock, which is especially challenging when designing compact systems.


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