首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Synthesis of Poly(N-ethylaniline) Nanoparticles Synthesis and Characterization of Organically Soluble Conducting Poly(N-ethylaniline) Nanoparticles using Acrylic Acid as a Soft Template
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Synthesis of Poly(N-ethylaniline) Nanoparticles Synthesis and Characterization of Organically Soluble Conducting Poly(N-ethylaniline) Nanoparticles using Acrylic Acid as a Soft Template

机译:聚(N-乙基苯胺)纳米粒子的合成以丙烯酸为软模板的有机可溶导电聚(N-乙基苯胺)纳米粒子的合成和表征

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In this paper, we report the synthesis of poly(N-ethylaniline) (PNETA) by using tartaric acid (TA) as an organic acid dopant by aqueous polymerization method of N-ethylaniline using ammonium per sulphate (APS) as an oxidant and acrylic acid (AA) as a soft template. This is a new polymerization method for the direct synthesis of the emeraldine salt form of poly(N-ethylaniline) in bulk quantity, which is soluble in organic solvents such as m-cresol and N-methyl pyrrolidinone. The prepared polymers were characterized by UV, FTIR, XRD, TGA, SEM and conductivity measurement studies. The results are discussed with reference to HCl doped poly(N-ethylaniline). It is observed that PNETA/TA/AA polymer is comparatively more soluble in m-cresol than that doped with HCl in its salt form. The formation of emeraldine salt phase and dopping process was confirmed by FTIR and UV-Vis spectroscropy. We demonstrate the effect of organic dopant on the morphology and conductivity of the PNETA. It was found that, PNETA doped with TA synthesized using acrylic acid (AA) as a soft template display higher doping level, crystallinity and solubility in common organic solvent. On the contrary, HCl doped polymer was lowered at doping level and amorphous in nature which reflects the role of organic dopant and soft template. X-ray diffraction studies indicate that the PNETA/TA/AA doped samples exhibit higher crystallinity, which indicates enhanced polymer sub-chain alignment as compared to HCl doped polymer. This is also manifested by the FTIR studies. SEM result also revealed the continuous morphology and sub-micrometer size, evenly distributed particles of the PNETA/TA/AA doped polymer.
机译:本文报道了以过硫酸铵(APS)为氧化剂,丙烯酸为原料的酒石酸(TA)为有机酸掺杂剂,以酒石酸(TA)为有机酸掺杂剂,合成了N-乙基苯胺(PNETA)。酸(AA)作为软模板。这是直接合成大量聚(N-乙基苯胺)的翡翠盐形式的新的聚合方法,其可溶于间甲酚和N-甲基吡咯烷酮等有机溶剂中。通过UV,FTIR,XRD,TGA,SEM和电导率测量研究对制备的聚合物进行了表征。参考HCl掺杂的聚(N-乙基苯胺)讨论结果。观察到,PNETA / TA / AA聚合物在间甲酚中的溶解度比以盐形式掺杂HCl的溶解度高。 FTIR和UV-Vis光谱仪证实了翡翠盐相的形成和掺杂过程。我们证明了有机掺杂剂对PNETA的形态和电导率的影响。结果发现,以丙烯酸(AA)为软模板合成的TA掺杂的PNETA在常规有机溶剂中表现出较高的掺杂水平,结晶度和溶解度。相反,HCl掺杂的聚合物在掺杂水平上降低了,并且本质上是无定形的,这反映了有机掺杂剂和软模板的作用。 X射线衍射研究表明,掺杂PNETA / TA / AA的样品表现出更高的结晶度,这表明与HCl掺杂的聚合物相比,聚合物亚链的排列增强。 FTIR研究也证明了这一点。 SEM结果还显示出连续的形态和亚微米尺寸,PNETA / TA / AA掺杂聚合物的颗粒均匀分布。

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