Department of Applied Chemistry, Meiji University, Kawasaki214-8571, Japan.
J Phys Chem B. 2022 Oct 13;126(40):7992-7998. doi: 10.1021/acs.jpcb.2c03069. Epub 2022 Oct 3.
To investigate the diffusive properties of water in hydrogels, molecular orbital and molecular dynamics calculations of poly-,-dimethylacrylamide-water systems were performed. The results show that the mean diffusion coefficient of water drastically decreases in the middle dehydration stage. In this stage, the mobilities of water are restrained because part of the water forms hydrogen bonds to bind polymer chains due to a glass transition. In addition to the three well-known types of water (i.e., bound, intermediate, and free water) around hydrophilic polymers in hydrogels, our results suggest that the intermediate water can be further classified into two types: first and second intermediate water. The bound and first intermediate water acts as a cross-linker between polymer chains, even if the polymer does not form intra- or intermolecular bonds itself. The diffusive properties of water might have important implications for the interpretation of properties of polymer hydrogels.
为了研究水在水凝胶中的扩散特性,对聚(-,-二甲基丙烯酰胺)-水体系进行了分子轨道和分子动力学计算。结果表明,在中间脱水阶段,水的平均扩散系数急剧下降。在这个阶段,由于玻璃化转变,部分水形成氢键与聚合物链结合,因此水的迁移率受到限制。除了水凝胶中亲水聚合物周围的三种众所周知的水类型(即结合水、中间水和自由水)之外,我们的结果还表明,中间水可以进一步分为两种类型:第一中间水和第二中间水。即使聚合物本身不形成分子内或分子间键,结合水和第一中间水也可以充当聚合物链之间的交联剂。水的扩散性质对于解释聚合物水凝胶的性质可能具有重要意义。