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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Structural and electrical properties of HCl-polyaniline-Ag composites synthesized by polymerization using Ag-coated (NH4)(2)S2O8 powder
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Structural and electrical properties of HCl-polyaniline-Ag composites synthesized by polymerization using Ag-coated (NH4)(2)S2O8 powder

机译:通过使用Ag涂覆(NH4)(2)S2O8粉末通过聚合合成的HCl-聚苯胺-Ag复合材料的结构和电性能

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摘要

Ag nanoparticles were sputter-deposited on ammonium persulfate ((NH4)(2)S2O8) powder to obtain (NH4)(2)S2O8-Ag powder, which was used to synthesize the HCl-doped polyaniline-Ag (HCl-PANI-Ag) composite via a polymerization procedure. The Ag nanoparticles were dispersed in the HCl-PANI matrix, and their sizes mainly ranged from 3 to 6 nm. The Ag nanoparticles did not affect the structure of emeraldine salt in the composite, and they increased the ordered crystalline regions in the HCl-PANI matrix. The HCl-PANI-Ag composite had a conductivity of (6.8 +/- 0.1) S/cm, which is about four times larger than that of the HCl-PANI. The charge transport mechanism in the composite is explained by the three-dimensional Mott variable-range hopping (3D-Mott-VRH).
机译:在过硫酸铵((NH 4)(2)S2O8)粉末上溅射纳米粒子,得到(NH 4)(2)S2O8-AG粉末,其用于合成HCl掺杂的聚苯胺-Ag(HCl-Pani-Ag )通过聚合方法复合。 将Ag纳米颗粒分散在HCl-Pani基质中,它们的尺寸主要为3至6nm。 Ag纳米颗粒不影响复合材料中欧麻盐盐的结构,并且它们在HCl-Pani基质中增加了有序结晶区域。 HCl-Pani-Ag复合材料的电导率为(6.8 +/- 0.1)S / cm,其比HCl-Pani大约四倍。 复合材料中的电荷传送机制由三维Mott可变范围跳跃(3D-Mott-VRH)解释。

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