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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis, characterization, and thermal aging behavior of HCl-doped polyaniline/TRGO nanocomposites
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Synthesis, characterization, and thermal aging behavior of HCl-doped polyaniline/TRGO nanocomposites

机译:HCl掺杂的聚苯胺/ TRGU纳米复合材料的合成,表征和热老化行为

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In this article polyaniline (PANI) nanocomposites containing thermally reduced graphene oxide (TRGO) were synthesized and characterized before and after thermal aging. The nanocomposites were prepared through in situ oxidative polymerization of aniline in the presence of TRGO nanoplatelets. FTIR and Raman spectroscopies, XRD, FESEM, and electrical conductivity measurements were used to characterize synthesized materials. PANI/TRGO nanocomposites showed considerably higher electrical conductivity when compared to pure PANI, which was associated with the higher electrical conductivity of TRGO and increased crystallinity of PANI in the presence of TRGO. Pure PANI and PANI/TRGO nanocomposites were thermally aged at 70, 80, 90, and 100(omicron)C. The results showed that the characteristic time of thermal aging process is higher for PANI/TRGO nanocomposites and increases with TRGO loading, which indicates better stability of conductivity during thermal aging process. On the other hand, the characteristic time of thermal aging reduced with aging temperature and a fast decrease was observed from 80 to 90(omicron)C. Improved resistance over thermal aging can be attributed to the barrier effect of TRGO nanoplatelets to the dopant molecules, which retards conductivity degradation in the thermal aging process. Furthermore, TRGO increases PANI crystallinity and it can also prevent crystallinity reduction during thermal aging process. (C) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 44635.
机译:在该制品中,含有热还原石墨烯(TRGO)的聚苯胺(PANI)纳米复合材料在热老化之前和之后合成并表征。通过在Trgo纳米孔的存在下原位氧化聚合制备纳米复合材料。 FTIR和拉曼光谱法,XRD,FESEM和电导率测量用于表征合成材料。与纯PANI相比,PANI / TRGO纳米复合材料显示出相当高的电导率,与纯PANI相比,与TRGO的较高导电性和PANI存在于TRGO的情况下有关。纯PANI和PANI / TRGU纳米复合材料在70,80,90和100(OMICRON)C中热量老化。结果表明,对于PANI / TRGO纳米复合材料,热老化过程的特性时间较高,并且随着TRGO负载增加,表示热老化过程中的导电性稳定性更好。另一方面,观察到80至90(omicron)C,观察到随着衰老温度和快速减少减少的热老化的特征时间。通过热老化的改善抗性可归因于TRGO纳米孔谱对掺杂剂分子的阻挡效应,其在热老化过程中延迟导电性降解。此外,Trgo增加了Pani结晶度,并且还可以防止热老化过程中的结晶度降低。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,44635。

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