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Structural Characterization of 6-Halo-6-Deoxycelluloses by Direct-Dissolution Solution-State NMR Spectroscopy

Structural_Characterization_of_6-Halo-6-Deoxycelluloses_by_Direct-Dissolution_Solution-State_NMR_Spectroscopy.pdf
Structural_Characterization_of_6-Halo-6-Deoxycelluloses_by_Direct-Dissolution_Solution-State_NMR_Spectroscopy.pdf - Publisher's version - 1.59 MB
M. Dryś, T. V. Koso, P. O. Kilpeläinen, K. T. Rinne-Garmston, A. R. Todorov, S. K. Wiedmer, V. Iashin, A. W. T. King, Structural Characterization of 6-Halo-6-Deoxycelluloses by Direct-Dissolution Solution-State NMR Spectroscopy. Macromol. Rapid Commun. 2024, 2300698. https://doi.org/10.1002/marc.202300698

Tiivistelmä

Regioselective modifications of cellulose using activated cellulose derivatives such as 6-halo-6-deoxycelluloses provide a convenient approach for developing sustainable products with properties tailored to specific applications. However, maintaining precise regiochemical control of substituent distribution in 6-halo-6-deoxycelluloses is challenging due to their insolubility in most common solvents and the resulting difficulties in precise structure elucidation by modern instrumental analytical techniques. Herein, an accessible NMR-based approach toward detailed characterization of 6-halo-6-deoxycelluloses, including the determination of the degrees of substitution at carbon 6 (DS6), is presented. It is shown that the direct-dissolution cellulose solvent, tetrabutylphosphonium acetate:DMSO-d6, converts 6-halo-6-deoxycelluloses to 6-monoacetylcellulose, enabling in situ solution-state NMR measurements. A range of 1D and 2D NMR experiments is used to demonstrate the quantitivity of the conversion and provide optimum dissolution conditions. In comparison with other NMR-based derivatization protocols for elucidating the structure of 6-halo-6-deoxycelluloses, the presented approach offers major advantages in terms of accuracy, speed, and simplicity of analysis, and minimal requirements for reagents or NMR instrumentation.

ISBN

OKM-julkaisutyyppi

A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Julkaisusarja

Macromolecular rapid communications

Volyymi

45

Numero

13

Sivut

Sivut

13 p.

ISSN

1022-1336
1521-3927