ACS Nano. 2020 Jun 23;14(6):6774-6784. doi: 10.1021/acsnano.0c00171. Epub 2020 May 18.
The macro- and microstructural evolution of water swollen and ethanol swollen regenerated cellulose gel beads have been determined during drying by optical microscopy combined with analytical balance measurements, small-angle X-ray scattering (SAXS), and wide-angle X-ray scattering (WAXS). Two characteristic length scales, which are related to the molecular dimension of cellulose monomer and elongated aggregates of these monomers, could be identified for both types of beads by SAXS. For ethanol swollen beads, only small changes to the structures were detected in both the SAXS and WAXS measurements during the entire drying process. However, the drying of cellulose from water follows a more complex process when compared to drying from ethanol. As water swollen beads dried, they went through a structural transition where elongated structures changed to spherical structures and their dimensions increased from 3.6 to 13.5 nm. After complete drying from water, the nanostructures were characterized as a combination of rodlike structures with an approximate size of cellulose monomers (0.5 nm), and spherical aggregates (13.5 nm) without any indication of heterogeneous meso- or microporosity. In addition, WAXS shows that cellulose II hydrate structure appears and transforms to cellulose II during water evaporation, however it is not possible to determine the degree of crystallinity of the beads from the present measurements. This work sheds lights on the structural changes that occur within regenerated cellulose materials during drying and can aid in the design and application of cellulosic materials as fibers, adhesives, and membranes.
通过光学显微镜结合分析天平测量、小角 X 射线散射(SAXS)和广角 X 射线散射(WAXS),研究了水合和乙醇合再生纤维素凝胶珠在干燥过程中的宏观和微观结构演变。通过 SAXS 可以为这两种类型的珠粒确定两个特征长度尺度,它们与纤维素单体的分子尺寸和这些单体的伸长聚集物有关。对于乙醇合珠粒,在整个干燥过程中,SAXS 和 WAXS 测量中仅检测到结构的微小变化。然而,与从乙醇中干燥相比,水合纤维素的干燥过程更为复杂。当水合珠粒干燥时,它们经历了一个结构转变,其中伸长结构转变为球形结构,其尺寸从 3.6nm 增加到 13.5nm。在完全从水中干燥后,纳米结构被表征为具有纤维素单体(0.5nm)近似尺寸的棒状结构和球形聚集体(13.5nm)的组合,没有任何异质介孔或微孔的迹象。此外,WAXS 表明纤维素 II 水合物结构在水蒸发过程中出现并转化为纤维素 II,但无法从目前的测量中确定珠粒的结晶度。这项工作揭示了再生纤维素材料在干燥过程中发生的结构变化,有助于设计和应用纤维素材料作为纤维、粘合剂和膜。