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Thermal characterization and electrical properties of Fe-modified cellulose long fibers and micro crystalline cellulose

机译:铁改性纤维素长纤维和微晶纤维素的热表征和电性能

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Thermal properties of polylactic acid (PLA) filled with Fe-modified cellulose long fibers (CLF) and microcrystalline cellulose (MCC) were studied using thermo gravimetric analysis (TG), differential scanning calorimetry, and dynamic mechanical analysis (DMA). The Fe-modified CLFs and MCCs were compared with unmodified samples to study the effect of modification with Fe on electrical conductivity. Results from TG showed that the degradation temperature was higher for all composites when compared to the pure PLA and that the PLA composites filled with unmodified celluloses resulted in the best thermal stability. No comparable difference was found in glass transition temperature (T g) and melting temperature (T m) between pure PLA and Fe-modified and unmodified CLF- and MCC-based PLA biocomposites. DMA results showed that the storage modulus in glassy state was increased for the biocomposites when compared to pure PLA. The results obtained from a femtostat showed that electrical conductivity of Fe-modified CLF and MCC samples were higher than that of unmodified samples, thus indicating that the prepared biocomposites have potential uses where conductive biopolymers are needed. These modified fibers can also be tailored for fiber orientation in a matrix when subjected to a magnetic field.
机译:使用热重分析(TG),差示扫描量热法和动态力学分析(DMA)研究了填充有铁改性纤维素长纤维(CLF)和微晶纤维素(MCC)的聚乳酸(PLA)的热性能。将Fe改性的CLF和MCC与未改性的样品进行比较,以研究Fe改性对电导率的影响。 TG的结果表明,与纯PLA相比,所有复合材料的降解温度都更高,并且填充有未改性纤维素的PLA复合材料具有最佳的热稳定性。纯PLA与Fe改性的和未改性的基于CLF和MCC的PLA的玻璃化转变温度(T 和熔融温度(T sub )没有发现可比的差异生物复合材料。 DMA结果表明,与纯PLA相比,生物复合材料在玻璃态下的储能模量增加。从femtostat获得的结果表明,铁改性的CLF和MCC样品的电导率高于未改性的样品,因此表明所制备的生物复合材料具有潜在的用途,需要导电生物聚合物。这些改性的纤维还可以针对磁场中的基质中的纤维取向进行定制。

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