Department of Chemistry and Chemical Engineering, Chalmers University of Technology, 412 96 Gothenburg, Sweden.
Department of Physics, Chalmers University of Technology, 412 96 Gothenburg, Sweden.
Carbohydr Polym. 2021 Nov 15;274:118634. doi: 10.1016/j.carbpol.2021.118634. Epub 2021 Sep 4.
Combining NaOH with other hydroxide bases with superior dissolution properties can be a means of improving dissolution of cellulose. However, this raises questions about how the size and structure of cellulose vary when dissolved in different hydroxide bases. Here, cellulose in aqueous solutions of NaOH, Tetramethylammonium hydroxide (TMAH), Benzyltrimethylammonium hydroxide (Triton B) and previously studied equimolar solutions of NaOH/TMAH and NaOH/Triton B were investigated using small angle X-ray scattering, static and dynamic light scattering. The results show that cellulose in NaOH(aq) is largely aggregated and that the more hydrophobic TMAH and Triton are capable of molecularly dissolving cellulose into worm-like conformations, stiffer than in NaOH. The dissolution properties of mixtures are highly dependent on the compatibility of the individual bases; in line with previous observations of the properties of the solutions which now could be correlated to the structure of the cellulose on a nano- and microscale.
将 NaOH 与其他溶解性能更优的氢氧化物混合,可以提高纤维素的溶解性能。然而,这就提出了一个问题,即当纤维素溶解在不同的氢氧化物中时,其尺寸和结构会如何变化。在这里,使用小角 X 射线散射、静态和动态光散射研究了纤维素在 NaOH、四甲基氢氧化铵(TMAH)、苄基三甲基氢氧化铵(Triton B)水溶液以及先前研究过的等摩尔 NaOH/TMAH 和 NaOH/Triton B 溶液中的情况。结果表明,NaOH(aq)中的纤维素主要是聚集的,而疏水性更强的 TMAH 和 Triton 能够将纤维素分子溶解成类似蠕虫的构象,其刚性比在 NaOH 中更强。混合物的溶解性能高度依赖于各个碱的相容性;这与之前对溶液性质的观察结果一致,现在可以将其与纳米和微尺度上纤维素的结构相关联。