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Fabrication, nanostructure evaluation, 3D electrical transport and electrochemical capacitance of PEDOT-Ti(IV)-doped iron(III) oxide nanocomposite

机译:PEDOT-Ti(IV)掺杂的氧化铁(III)纳米复合材料的制备,纳米结构评估,3D电输运和电化学电容

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摘要

Poly[3,4-(ethylenedioxy)thiophene] (PEDOT) nanocomposites (NCs) reinforced by varying titanium(IV)-doped iron(III) nano oxide (NITO) particles have been fabricated in dodecylbenzene sulphonic acid by in situ polymerization process using ammonium perdisulfate as initiator. The samples were characterized by X-ray diffraction, Fourier transform infrared spectroscopy, electron microscopy, BET surface analysis etc. followed by subsequent evaluation of thermal properties, temperaturedependent 3D electrical transport. Thermal stability of the NCs increased with increasing NITO amount in PEDOT matrix. Electrical conductivity of the NCs increased significantly with increasing NITO content (0.45-67.73 S cm~(-1)) and also with the temperature (50-300 K). 3D variable range hopping conduction mechanism explained the conduction pathways. Specific capacitance of NCs are enhanced with higher NITO content in polymer from 107 F g~(-1) (pristine PEDOT) to 158 F g-1 (NC) owing to the development of mesoporous (pore size: 4.1 nm and cylindrical pore volume: 0.103 cm~3 g~(-1)) structure and high specific surface area (*104 m~2 g~(-1)).
机译:通过在十二烷基苯磺酸中采用原位聚合工艺,通过在十二烷基苯磺酸中制备了由各种掺杂钛(IV)的铁(III)纳米氧化物(NITO)颗粒增强的聚[3,4-(乙二氧基)噻吩](PEDOT)纳米复合材料(NCs)。过二硫酸铵作为引发剂。通过X射线衍射,傅立叶变换红外光谱,电子显微镜,BET表面分析等对样品进行表征,随后评估其热性能,温度依赖性3D电迁移。随着PEDOT基质中NITO含量的增加,NC的热稳定性也随之提高。 NCs的电导率随NITO含量(0.45-67.73 S cm〜(-1))和温度(50-300 K)的增加而显着增加。 3D可变范围跳跃传导机制解释了传导途径。由于中孔的发展(孔尺寸:4.1 nm和圆柱孔体积),随着聚合物中NITO含量从107 F g〜(-1)(原始PEDOT)增加到158 F g-1(NC),NC的比电容得到增强:0.103 cm〜3 g〜(-1))结构和高比表面积(* 104 m〜2 g〜(-1))。

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