Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Gothenburg, Sweden; Wallenberg Wood Science Center, Chalmers University of Technology, Gothenburg, Sweden.
Department of Physics, Chalmers University of Technology, Gothenburg, Sweden.
Carbohydr Polym. 2021 Jan 15;252:117105. doi: 10.1016/j.carbpol.2020.117105. Epub 2020 Sep 19.
Periodate oxidation of polysaccharides has transitioned from structural analysis into a modification method for engineered materials. This review summarizes the research on this topic. Fibers, fibrils, crystals, and molecules originating from forests that have been subjected to periodate oxidation can be crosslinked with other entities via the generated aldehyde functionality, that can also be oxidized or reduced to carboxyl or alcohol functionality or used as a starting point for further modification. Periodate-oxidized materials can be subjected to thermal transitions that differ from the native cellulose. Oxidation of polysaccharides originating from forests often features oxidation of structures rather than liberated molecules. This leads to changes in macro, micro, and supramolecular assemblies and consequently to alterations in physical properties. This review focuses on these aspects of the modulation of structural hierarchies due to periodate oxidation.
过碘酸盐氧化多糖已从结构分析转变为工程材料的修饰方法。本文综述了该领域的研究进展。经过碘酸盐氧化的源自森林的纤维、原纤维、晶体和分子,可以通过生成的醛基与其他实体交联,这些醛基也可以被氧化或还原为羧基或醇基,或者用作进一步修饰的起点。过碘酸盐氧化的材料可以经历不同于天然纤维素的热转变。源自森林的多糖的氧化通常表现为结构的氧化,而不是游离分子的氧化。这导致宏观、微观和超分子组装的变化,进而导致物理性质的改变。本文综述了由于过碘酸盐氧化导致结构层次调制的这些方面。