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  4. Advanced characterization of regioselectively substituted methylcellulose model compounds by DNP enhanced solid-state NMR spectroscopy
 
research article

Advanced characterization of regioselectively substituted methylcellulose model compounds by DNP enhanced solid-state NMR spectroscopy

Berruyer, Pierrick  
•
Gericke, Martin
•
Moutzouri, Pinelopi
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March 15, 2021
Carbohydrate Polymers

Dynamic Nuclear Polarization MAS NMR is introduced to characterize model methylcellulose ether compounds at natural isotopic abundance. In particular an approach is provided to determine the position of the methyl ether group within the repeating unit. Specifically, natural abundance 13C-13C correlation experiments are used to characterize model 3-O-methylcellulose and 2,3-O-dimethylcellulose, and identify changes in chemical shifts with respect to native cellulose. We also probe the use of through space connectivity to the closest carbons to the CH3 to identify the substitution site on the cellulose ether. To this end, a series of methylcellulose ethers was prepared by a multistep synthesis approach. Key intermediates in these reactions were 2,6-O-diprotected thexyldimethylsilyl (TDMS) cellulose and 6-O-monoprotected TDMS cellulose methylated under homogeneous conditions. The products had degrees of substitution of 0.99 (3-O-methylcellulose) and 2.03 (2,3-O-dimethylcellulose) with exclusively regioselective substitution. The approaches developed here will allow characterization of the substitution patterns in cellulose ethers.

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Type
research article
DOI
10.1016/j.carbpol.2021.117944
Author(s)
Berruyer, Pierrick  
Gericke, Martin
Moutzouri, Pinelopi
Jakobi, Dörthe
Bardet, Michel
Karlson, Leif
Schantz, Staffan
Heinze, Thomas
Emsley, Lyndon  
Date Issued

2021-03-15

Published in
Carbohydrate Polymers
Volume

262

Article Number

117944

Subjects

Cellulose ethers

•

Regioselectivity

•

Methylcellulose

•

Structure characterization

•

Solid state NMR

•

DNP enhancement

Note

This is an Open Access article under the terms of the Creative Commons Attribution License

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRM  
Available on Infoscience
March 26, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/176909
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