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A Comparative Study on the Characterization of Nanofibers with Cellulose I I/II and II Polymorphs from Wood

机译:木材中纤维素II / II和II多晶型物表征纳米纤维的比较研究

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摘要

Polymorphic changes in cellulose nanofibers (CNFs) are closely related to their properties and applications, and it is of interest to investigate how polymorphic changes influence their properties. A comparative study on the properties of CNFs with cellulose I, I/II, and II polymorphs from wood was conducted herein. CNFs were obtained by chemical extraction combined with a simple and efficient mechanical treatment (one pass through a grinder). This process resulted in a relatively high yield of 80–85% after a simple grinding treatment. The polymorphic changes in the CNFs and the chemical composition, morphology, tensile performances, and thermal properties were systematically characterized and compared. The X-ray diffraction and FTIR analyses verified the existence of three types of purified pulps and CNFs with cellulose I, cellulose I/II, and cellulose II polymorphs (CNF-I, CNF-I/II, CNF-II). Morphological observations presented that these three types of CNFs all exhibited high aspect ratios and entangled structures. Tensile testing showed that the CNF films all exhibited high tensile strengths, and the fracture strains of the CNF-I/II (11.8%) and CNF-II (13.0%) films were noticeably increased compared to those of the CNF-I film (6.0%). If CNF-II is used as reinforcing material, its larger fracture strain can improve the mechanical performance of the CNF composites, such as fracture toughness and impact strength. In addition, CNF-I, CNF-I/II, and CNF-II films showed very low thermal expansion in the range 20–150 °C, with the coefficient of thermal expansion values of 9.4, 17.1, and 17.3 ppm/K, respectively. Thermogravimetric analysis (TGA) revealed that the degradation temperature of CNF-I and CNF-II was greater than that of CNF-I/II, which was likely due to increased α-cellulose content. This comparative study of the characterization of CNF-I, CNF-I/II, and CNF-II provides a theoretical basis for the application of CNFs with different polymorphs and could broaden the applications of CNFs.
机译:纤维素纳米纤维(CNFs)的多晶型变化与它们的性质和应用密切相关,研究多晶型变化如何影响其性能非常有趣。本文对来自木材的具有纤维素I,I / II和II多晶型物的CNF的性质进行了比较研究。通过化学提取结合简单有效的机械处理(一次通过研磨机)获得CNF。经过简单的研磨处理后,该过程的相对产率高达80-85%。系统地表征和比较了CNF的多晶型变化以及化学成分,形态,拉伸性能和热性能。 X射线衍射和FTIR分析证实了三种类型的纯化纸浆和CNF,它们具有纤维素I,纤维素I / II和纤维素II多晶型物(CNF-I,CNF-I / II,CNF-II)。形态学观察表明,这三种类型的CNF均显示出高长宽比和缠结结构。拉伸试验表明,CNF膜均显示出高拉伸强度,与CNF-I膜相比,CNF-I / II(11.8%)和CNF-II(13.0%)膜的断裂应变明显增加( 6.0%)。如果将CNF-II用作增强材料,则其较大的断裂应变可改善CNF复合材料的机械性能,例如断裂韧性和冲击强度。此外,CNF-I,CNF-I / II和CNF-II膜在20–150°C的范围内显示出非常低的热膨胀系数,其热膨胀系数分别为9.4、17.1和17.3 ppm / K,分别。热重分析(TGA)显示,CNF-I和CNF-II的降解温度高于CNF-I / II的降解温度,这可能是由于α-纤维素含量增加所致。这项对CNF-I,CNF-I / II和CNF-II表征的比较研究为具有不同多晶型的CNF的应用提供了理论基础,并可能拓宽CNFs的应用范围。

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