葡甘露聚糖
化学
吸附
纤维素
水蒸气
化学工程
多糖
聚合物
固态核磁共振
吸水率
质子核磁共振
材料科学
有机化学
核磁共振
吸附
复合材料
工程类
物理
生物化学
作者
Xavier Falourd,Corinne Rondeau‐Mouro,Mireille Cambert,Marc Lahaye,Brigitte Chabbert,Véronique Aguié‐Béghin
标识
DOI:10.1016/j.carbpol.2023.121579
摘要
Characterizing the hygroscopic behavior of macromolecular assemblies is crucial for understanding biological processes as well as to develop tailor-made polysaccharides-based products. In this work, assemblies consisting of nanocelluloses (CNC or CNF) and/or glucomannan in different ratio were studied at different water activity levels, using a multi-analytical approach that combined Dynamic Vapor Sorption (DVS), Time-Domain Nuclear Magnetic Resonance (TD-NMR) and solid-state NMR (ss-NMR). The water retention capacity of the films, as a function of their composition, showed that an enrichment in konjac glucomannan in association with cellulose increased the water absorption capacity but decreased the water retention capacity. In addition, the combination of CNC and glucomannan appears to reduce the water absorption capacity of each polymer. Correlating the findings from the various methods allowed us to propose the use of TD-NMR data for predicting the water retention capacity. These results, summarized in a schematic representation, offer new insights into the organization of water molecules in polysaccharide assemblies in various humidity conditions.
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