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Polyaniline-modified nanocellulose prepared from Semantan bamboo by chemical polymerization: preparation and characterization

机译:用化学聚合法从红花丹竹中制备的聚苯胺改性的纳米纤维素:制备与表征

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Crystalline nanocellulose was prepared from Semantan bamboo (Gigantochloa scortechinii) via acid hydrolysis and was used to synthesize a nanocomposite of polyaniline/crystalline nanocellulose (PANi/CNC) via in situ oxidative polymerization of aniline in the presence of crystalline nanocellulose. The electrochemical properties of the nanocomposite were studied using a modified PANi/CNC electrode via cyclic voltammetry, and higher current response was observed for the PANi/CNC-modified electrode compared to that for the modified electrode with PANi. The results obtained from EIS displayed lower value of Rct for the PANi/CNC-modified electrode, indicating that the incorporation of CNC into the PANi structure could enhance the electron transfer rate. The characteristic peaks of PANi and CNC were observed in the FTIR spectra of the nanocomposite, indicating the incorporation of CNC inside the nanocomposite structure. Moreover, in the XRD diffractogram, lower crystallinity was observed at the 2 theta values of 22.6 and 16.1 for PANi/CNC compared to that for pure CNC. The FESEM images showed high porosity of the nanostructure with no phase separation, revealing the homogenous polymerization of the monomer on the surface of the crystalline cellulose. Aggregation of PANi particles was observed with the increasing aniline concentration.
机译:通过酸水解从Semantan竹( Gigantochloa scortechinii 中制备晶体纳米纤维素,并将其用于合成聚苯胺/晶体纳米纤维素(PANi / CNC)的纳米复合物。晶体纳米纤维素存在下苯胺的原位氧化聚合通过循环伏安法使用修饰的PANi / CNC电极研究了纳米复合材料的电化学性能,与用PANi修饰的电极相比,PANi / CNC修饰的电极具有更高的电流响应。从EIS获得的结果显示PANi / CNC修饰电极的 R ct 值较低,这表明CNC结合到PANi中结构可以提高电子传输速率。在纳米复合材料的FTIR光谱中观察到PANi和CNC的特征峰,表明CNC在纳米复合材料结构内的结合。此外,在XRD衍射图中,与纯CNC相比,PANi / CNC在2θ值为22.6和16.1时观察到较低的结晶度。 FESEM图像显示出纳米结构的高孔隙率,没有相分离,表明了结晶纤维素表面上单体的均相聚合。随着苯胺浓度的增加,观察到PANi颗粒的聚集。

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