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research article

Rational Design of Dinitroxide Polarizing Agents for Dynamic Nuclear Polarization to Enhance Overall NMR Sensitivity

Venkatesh, Amrit  
•
Casano, Gilles
•
Wei, Ran  
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January 24, 2024
Angewandte Chemie International Edition

We evaluate the overall sensitivity gains provided by a series of eighteen nitroxide biradicals for dynamic nuclear polarization (DNP) solid-state NMR at 9.4 T and 100 K, including eight new biradicals. We find that in the best performing group the factors contributing to the overall sensitivity gains, namely the DNP enhancement, the build-up time, and the contribution factor, often compete with each other leading to very similar overall sensitivity across a range of biradicals. NaphPol and HydroPol are found to provide the best overall sensitivity factors, in organic and aqueous solvents respectively. One of the new biradicals, AMUPolCbm, provides high sensitivity for all three solvent formulations measured here, and can be considered to be a "universal" polarizing agent.|Eighteen nitroxide biradicals for DNP-enhanced solid-state NMR are compared at 9.4 T and 100 K, including eight new biradicals. Among the best performing radicals, the factors contributing to the overall sensitivity gains often compete with each other leading to very similar overall performance across a range of biradicals. One of the new biradicals, AMUPolCbm, works well in both organic and aqueous solvents, making it a "universal" polarizing agent.image

  • Details
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Type
research article
DOI
10.1002/anie.202317337
Web of Science ID

WOS:001147974300001

Author(s)
Venkatesh, Amrit  
Casano, Gilles
Wei, Ran  
Rao, Yu  
Lingua, Hugo
Karoui, Hakim
Yulikov, Maxim
Ouari, Olivier
Emsley, Lyndon  
Date Issued

2024-01-24

Publisher

Wiley-VCH Verlag GmbH

Published in
Angewandte Chemie International Edition
Volume

63

Issue

9

Article Number

e202317337

Subjects

Physical Sciences

•

Dynamic Nuclear Polarization

•

Hyperpolarization

•

Nmr Spectroscopy

•

Nitroxide Free Radicals

•

Polarizing Agents

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRM  
FunderGrant Number

Swiss National Science Foundation

200020_212046

EU H2020-INFRAIA

101008500

French National Research Agency

ANR-22-CE09-0017-01

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Available on Infoscience
February 23, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/205349
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