首页> 外文期刊>Journal of Applied Polymer Science >Conducting polymer blends prepared from polyaniline with n-dodecylbenzenesulfonic acid zinc salt as the secondary dopant
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Conducting polymer blends prepared from polyaniline with n-dodecylbenzenesulfonic acid zinc salt as the secondary dopant

机译:由聚苯胺与正十二烷基苯磺酸锌盐作为第二种掺杂剂制备的导电聚合物共混物

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摘要

A red-shift of the UV-vis spectra of n-dodecylbenzenesulfonic acid doped polyaniline (PANI (DBSA)(0.5)), resulting from the secondary doping of polyaniline backbones, was found in the presence of n-dodecylbenzenesulfonic acid zinc salt (Zn(DBS)(2)). It is proved to behave as steric hindrance spacers to induce the extension of the conjugation length through the straightening effect on the polyaniline backbones and the obtained mixtures (PANI(DBSA)(0.5) plus Zn(DBS)(2)) can be used as master batch materials (MB-13) for blending with regular polypropylene polymer (PP). The thermal degradation accompanied with loss of conductivity for MB-13 can be delayed to over 250 degrees C.when enough Zn(DBS)(2) was secondarily doped on PANI(DBSA)0.5., which allow the performance of its blending with other nonconducting/regular polymers possible. Below 80 rpm, increasing shear rates would induce higher viscosity difference between the MB-13 and PP matrix, resulting in elongation of MB-13 in the PP matrix and higher conductivities of the polyblends. The deviation from the Taylor equation, which is used to estimate the degree of elongation for a polyblend, started when shear rate is over 80 rpm. The leakage of Zn(DBS)(2) out of MB-13 can be confirmed by comparing the DSC thermograms and X-ray diffraction patterns with that of neat PP. Gradual deformation for the conductive fillers (MB-13) and a well-defined and expanded layered structure can be found when processing time is below 15 min with 60 rpm shear rate. The layers started to shrink back after 15 min of procession with the loss of the Zn(DBS)(2) from MB-13 in the PP matrix. (c) 2008 Wiley Periodicals, Inc.
机译:在存在正十二烷基苯磺酸锌盐(Zn)的情况下,发现由于聚苯胺主链的二次掺杂而导致正十二烷基苯磺酸掺杂的聚苯胺(PANI(DBSA)(0.5))的UV-vis光谱发生红移。 (DBS)(2))。事实证明,它可作为位阻隔离子,通过对聚苯胺主链的拉直作用来诱导共轭长度的延长,所得混合物(PANI(DBSA)(0.5)和Zn(DBS)(2))可以用作与常规聚丙烯聚合物(PP)共混的母料(MB-13)。当在PANI(DBSA)0.5上二次掺杂足够的Zn(DBS)(2)时,MB-13的热降解以及电导率的损失可以延迟到250摄氏度以上。非导电/常规聚合物。低于80 rpm,增加的剪切速率将导致MB-13与PP基体之间的粘度差异更高,从而导致PP基体中MB-13的伸长和多掺合物的高电导率。当剪切速率超过80 rpm时,就开始偏离与泰勒方程式有关的泰勒方程式,该方程式用于估算多掺混物的伸长度。通过将DSC热谱图和X射线衍射图与纯PP进行比较,可以确认Zn(DBS)(2)从MB-13中泄漏出来。当加工时间低于15分钟且剪切速率为60 rpm时,可以发现导电填料(MB-13)逐渐变形,并形成清晰且扩展的层状结构。加工15分钟后,各层开始收缩,而PP基体中MB-13失去了Zn(DBS)(2)。 (c)2008 Wiley期刊公司

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