TY - JOUR
T1 - Solid-state 13C NMR, X-ray diffraction and structural study of methyl 4-O-methyl β-D-glucopyranosides with all eight possible methyl-substitution patterns
AU - Yoneda, Yuko
AU - Kawada, Toshinari
AU - Bacher, Markus
AU - Prado-Roller, Alexander
AU - Hettegger, Hubert
AU - Potthast, Antje
AU - French, Alfred D.
AU - Rosenau, Thomas
N1 - Accession Number: WOS:001025413300005
PY - 2023/9
Y1 - 2023/9
N2 - Cellulose model compounds that mimic the building blocks of modified cellulose and cellulose derivatives are widely used in cellulose research to infer the properties of the polymer from the monomer. Based on the well-established model compound methyl 4-O-methyl β-d-glucopyranoside, in which the methyl groups represent the truncated side chains of the cellulose, the corresponding O-methyl-substituted derivatives with all eight different substitution patterns (mono-, di- and trisubstituted at O-2, O-3, O-6) were synthesized. Crystallization of the products in sufficient quality for solid-state structure determination by single-crystal X-ray diffraction succeeded in all cases, and the results are reported. Two of the compounds showed more than one independent molecule per unit cell. Solid-state 13C NMR showed a significant down-field shift (5–10 ppm) of the OMesubstituted carbons relative to the OH-substituted counterparts and generally confirmed the important influence of solid-state packing on the chemical shifts as seen by comparison to the solution NMR data.
AB - Cellulose model compounds that mimic the building blocks of modified cellulose and cellulose derivatives are widely used in cellulose research to infer the properties of the polymer from the monomer. Based on the well-established model compound methyl 4-O-methyl β-d-glucopyranoside, in which the methyl groups represent the truncated side chains of the cellulose, the corresponding O-methyl-substituted derivatives with all eight different substitution patterns (mono-, di- and trisubstituted at O-2, O-3, O-6) were synthesized. Crystallization of the products in sufficient quality for solid-state structure determination by single-crystal X-ray diffraction succeeded in all cases, and the results are reported. Two of the compounds showed more than one independent molecule per unit cell. Solid-state 13C NMR showed a significant down-field shift (5–10 ppm) of the OMesubstituted carbons relative to the OH-substituted counterparts and generally confirmed the important influence of solid-state packing on the chemical shifts as seen by comparison to the solution NMR data.
KW - Cellulose
KW - Hydrogen bond
KW - Methyl cellulose
KW - Model compounds
KW - Ring puckering
KW - Single-crystal X-ray diffraction
KW - Solid-state C NMR spectroscopy
KW - Solid-state structure
KW - Substitution pattern
UR - http://www.scopus.com/inward/record.url?scp=85164186871&partnerID=8YFLogxK
U2 - 10.1007/s10570-023-05347-w
DO - 10.1007/s10570-023-05347-w
M3 - Article
AN - SCOPUS:85164186871
SN - 0969-0239
VL - 30
SP - 8075
EP - 8087
JO - Cellulose
JF - Cellulose
IS - 13
ER -