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Preparation parameters of polyaniline/polyvinyl chloride flexible wires for electrical conductivity performance analysis based on orthogonal arrays

机译:基于正交阵列的电导率性能分析的聚苯胺/聚氯乙烯柔性线的制备参数

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摘要

A flexible polyaniline/polyvinyl chloride (PVC) polymer conductive wire was prepared using flexible PVC polymer as the substrate by the swelling – in-situ polymerization method, the line-shaped dents were pressed on the substrate by the thermodynamic pre-deformation treatment technology. Based on the orthogonal test method, the effects of five main influencing factors – swelling time (A), swelling temperature (B), oxidation temperature (C), oxidation time (D), and oxidant concentration (E) – on the conductivity of the prepared polyaniline/PVC conductive wire was investigated. The results of the orthogonal array testing were subjected to range analysis and analysis of variance (ANOVA), and the influencing factors, in terms of significance, follow the order of swelling temperature, oxidation time, swelling time, oxidation temperature, and oxidant concentration, with the optimal factor-level combination being A2B2C2D2E2, which led to a desirable conductivity up to 1.19 × 10−1 S/cm. In addition, the influence of different conductive line size characteristics on the molecular structure, microstructure, and conductivity of polyaniline/PVC flexible conductive wire was further studied. On the microstructure, as the line width increases, the infrared absorption intensity ratio of the quinone ring and the benzene ring in the polyaniline/PVC conductive wires gradually approaches 1. The microstructure, as the line width of the polyaniline/PVC conductive wire increases, the formed polyaniline gradually changes from flakes and granules to fibrous strips and entangles with each other to form a spatial network structure. The conductivity of the wire increases with the increase of its width up to 1.48 × 10−1 S/cm.
机译:使用柔性PVC聚合物作为基板制备柔性聚苯胺/聚氯乙烯(PVC)聚合物导电线通过溶胀的原位聚合方法,通过热力学预变形处理技术压制在基板上的线状凹痕。基于正交试验方法,五个主要影响因素的效果 - 溶胀时间(A),溶胀温度(B),氧化温度(C),氧化时间(D)和氧化剂浓度(E) - 导电性研究了制备的聚苯胺/ PVC导电线。对正交阵列测试的结果进行范围分析和分析方差(ANOVA),以及影响因素,在意义方面,遵循溶胀温度,氧化时间,溶胀时间,氧化温度和氧化剂浓度的顺序,具有最佳因子级组合为A2B2C2D2E2,其导致最高可达1.19×10-1 S / cm的期望电导率。另外,进一步研究了不同导电线尺寸特性对聚苯胺/ PVC柔性导电线的分子结构,微观结构和电导率的影响。在微观结构上,随着线宽的增加,醌环的红外吸收强度比和聚苯胺/ PVC导线中的苯环逐渐接近1.微观结构,随着聚苯胺/ PVC导电线的线宽增加,形成的聚苯胺逐渐从薄片和颗粒变为纤维条并彼此缠结以形成空间网络结构。电线的电导率随着其宽度的增加而增加,高达1.48×10-1 s / cm。

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