Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, the Netherlands.
Carbohydr Polym. 2020 Jul 15;240:116276. doi: 10.1016/j.carbpol.2020.116276. Epub 2020 Apr 21.
Hydrogels find application in many areas of technology and research due to their ability to combine responsiveness and robustness. A detailed understanding of their molecular structure and dynamics (which ultimately underpin their functional properties) is needed for their design to be optimized and these hydrogels to be exploited effectively. In this review, we shed light on the unique capabilities of solid-state NMR spectroscopy to reveal this information in molecular detail. We review recent literature on the advancements in solid-state NMR techniques in resolving the structure, degree of grafting, molecular organization, water-biopolymer interactions and internal dynamical behavior of hydrogels. Among various solid-state NMR techniques, C cross polarization (CP) magic angle spinning (MAS) NMR is examined for its ability to probe the hydrogel and its trapped solvent. Although widely applicable to many types of polymeric and supramolecular hydrogels, the current review focuses on polysaccharide-based hydrogels.
水凝胶因其能够兼具响应性和稳定性,在许多技术和研究领域都有应用。为了对其进行优化设计并有效利用,需要深入了解其分子结构和动力学(这些最终是其功能特性的基础)。在这篇综述中,我们揭示了固态 NMR 光谱学的独特能力,以从分子细节中揭示这些信息。我们回顾了近期关于固态 NMR 技术在解析水凝胶的结构、接枝程度、分子组织、水-生物聚合物相互作用以及内部动态行为方面的进展的文献。在各种固态 NMR 技术中,我们考察了 C 交叉极化(CP)魔角旋转(MAS)NMR 技术探测水凝胶及其被困溶剂的能力。虽然该技术广泛适用于许多类型的聚合和超分子水凝胶,但本综述主要关注多糖基水凝胶。