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Microstructure, thermal and mechanical properties of composite films based on carboxymethylated nanocellulose and polyacrylamide

机译:基于羧甲基化纳米纤维素和聚丙烯酰胺的复合膜的微观结构,热和力学性能

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摘要

For attaining eco-friendly nanocellulose-based films with enhanced thermal and mechanical properties, a series of composite films was fabricated by using a facile casting method of aqueous carboxymethylated cellulose nanofibril (c-CNF) dispersions with different contents (0-20 wt%) of polyacrylamide (PAM). The microstructure, thermal and mechanical properties of c-CNF/PAM composite films were investigated as a function of the PAM content. The FT-IR spectra revealed the presence of specific interactions between c-CNF and PAM in the composite films. Accordingly, the mechanical moduli of the films were highly improved with the addition of PAM. The storage modulus of the composite film with 20 wt% PAM were measured to be (similar to)935 MPa at 30 degrees C, which was far higher than the modulus (similar to)17 MPa for the neat c-CNF film. In addition, the thermal decomposition temperatures were found to increase from (similar to)303 degrees C for the neat c-CNF film to (similar to)312 degrees C for the composite film with 20 wt% PAM.
机译:为了获得具有增强的热和机械性能的环芳型纳米纤维素基薄膜,通过使用羧甲基化纤维素纳米纤维(C-CNF)分散体的容易铸造方法来制造一系列复合膜,其具有不同的内容物(0-20wt%)聚丙烯酰胺(PAM)。 C-CNF / PAM复合膜的微观结构,热和力学性能作为PAM含量的函数研究。 FT-IR光谱揭示了在复合膜中C-CNF和PAM之间的特异性相互作用的存在。因此,随着添加PAM,薄膜的机械模态高度改善。测量具有20wt%PAM的复合膜的储存模量(类似于)在30℃下(类似于)935MPa,其远高于纯C-CNF膜的模量(类似于)17MPa。此外,发现热分解温度从纯C-CNF膜与20wt%PAM的复合膜相比从(类似于)303摄氏度膜(类似于)312℃增加。

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