Park Shin Young, Yook Simyub, Goo Sooim, Im Wanhee, Youn Hye Jung
Department of Forest Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Korea.
Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Korea.
Nanomaterials (Basel). 2020 Mar 28;10(4):625. doi: 10.3390/nano10040625.
Cellulose nanofibrils (CNFs) have been used as reinforcing elements in optically transparent composites by combination with polymer matrices. In this study, strong, optically transparent, and thick CNF/epoxy composites were prepared by immersing two or four layers of CNF sheets in epoxy resin. The morphology of the CNF, the preparation conditions of the CNF sheet, and the grammage and layer numbers of the CNF sheets were controlled. The solvent-exchanged CNF sheets resulted in the production of a composite with high transparency and low haze. The CNF with smaller width and less aggregated fibrils, which are achieved by carboxymethylation, and a high number of grinding passes are beneficial in the production of optically transparent CNF/epoxy composites. Both the grammage and number of stacked layers of sheets in a composite affected the optical and mechanical properties of the composite. A composite with a thickness of 450-800 μm was prepared by stacking two or four layers of CNF sheets in epoxy resin. As the number of stacked sheets increased, light transmittance was reduced and the haze increased. The CNF/epoxy composites with two layers of low grammage (20 g/m) sheets exhibited high light transmittance (>90%) and low haze (<5%). In addition, the composites with the low grammage sheet had higher tensile strength and elastic modulus compared with neat epoxy and those with high grammage sheets.
纤维素纳米纤维(CNFs)已通过与聚合物基体结合,用作光学透明复合材料中的增强元素。在本研究中,通过将两层或四层CNF片材浸入环氧树脂中来制备高强度、光学透明且较厚的CNF/环氧树脂复合材料。对CNF的形态、CNF片材的制备条件以及CNF片材的克重和层数进行了控制。经溶剂交换的CNF片材制成了具有高透明度和低雾度的复合材料。通过羧甲基化获得的宽度较小且原纤聚集较少的CNF,以及大量的研磨道次,有利于制备光学透明的CNF/环氧树脂复合材料。复合材料中片材的克重和堆叠层数均会影响复合材料的光学和力学性能。通过将两层或四层CNF片材堆叠在环氧树脂中制备出了厚度为450 - 800μm的复合材料。随着堆叠片材数量的增加,透光率降低,雾度增加。具有两层低克重(20 g/m²)片材的CNF/环氧树脂复合材料表现出高透光率(>90%)和低雾度(<5%)。此外,与纯环氧树脂以及具有高克重片材的复合材料相比,具有低克重片材的复合材料具有更高的拉伸强度和弹性模量。