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Holocellulose Nanofibers of High Molar Mass and Small Diameter for High-Strength Nanopaper

机译:高摩尔质量小直径高强度纳米纸的全纤维素纳米纤维

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摘要

Wood cellulose nanofibers (CNFs) based on bleached pulp are different from the cellulose microfibrils in the plant cell wall in terms of larger diameter, lower cellulose molar mass, and modified cellulose topochemistry. Also, CNF isolation often requires high-energy mechanical disintegration. Here, a new type of CNFs is reported based on a mild peracetic acid delignification process for spruce and aspen fibers, followed by low-energy mechanical disintegration. Resulting CNFs are characterized with respect to geometry (AFM, TEM), molar mass (SEC), and polysaccharide composition. Cellulose nanopaper films are prepared by filtration and characterized by UV-vis spectrometry for optical transparency and uniaxial tensile tests. These CNFs are unique in terms of high molar mass and cellulose-hemicellulose core-shell structure. Furthermore, the corresponding nanopaper structures exhibit exceptionally high optical transparency and the highest mechanical properties reported for comparable CNF nanopaper structures.
机译:基于漂白纸浆的木质纤维素纳米纤维(CNF)与植物细胞壁中的纤维素微纤维不同,其直径更大,纤维素摩尔质量较低,并且改性的纤维素拓扑化学也不同。而且,CNF隔离通常需要高能机械分解。在此,据报道,一种新型的CNF是基于云杉和白杨纤维的温和过乙酸去木质素工艺,然后进行低能机械分解。相对于几何形状(AFM,TEM),摩尔质量(SEC)和多糖组成,对所得CNF进行了表征。纤维素纳米纸薄膜是通过过滤制备的,并通过紫外可见光谱法进行表征,以进行光学透明性和单轴拉伸试验。这些CNF在高摩尔质量和纤维素-半纤维素核-壳结构方面是独特的。此外,相应的纳米纸结构表现出极高的光学透明度和可比的CNF纳米纸结构所报告的最高机械性能。

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