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Polyaniline - Carrageenan - Polyvinyl Alcohol Composite Material Synthesized Via Interfacial Polymerization, its Morphological Characteristics and Enhanced Solubility in Water

机译:聚苯胺 - 角叉菜胶 - 聚乙烯醇复合材料通过界面聚合合成,其形态特征和水中的增强溶解度

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In recent years, conducting polyaniline (PAni) has been a popular interest of research in the field of conducting polymers due to its relatively low cost, ease of production, good conductivity, and environmental stability. Many studies however, have focused on improving its short-comings such as its limited processability and solubility in common solvents. In this study, PAni, soluble in water was produced via interfacial polymerization with chloroform as the organic solvent. Poly(vinyl alcohol) (PVA) and kappa( κ ), iota( ι ) and lambda( λ.) - carrageenan ( κ CGN, ι CGN, λ. CGN) were added to the aqueous layer to stabilize PAni in the medium. FTIR and UV-Vis absorption spectra of the solutions as well as the fabricated film confirmed the existence of PAni emeraldine salt (PAni-ES). FTIR spectrum also confirmed the peaks corresponding to the interaction of PAni with the CGNs. Moreover, PVA-CGN played a very large role on the stability of the PAni nanofibers integrated on the PVA-CGN matrix. The morphologies of the products were further investigated using SEM and TEM. Polymer electrolyte for supercapacitor or an interfacial layer for organic solar cell is being targeted as potential application of the synthesized water soluble PAni.
机译:近年来,由于其相对较低,易于生产,良好的导电性和环境稳定性,导电聚苯胺(PANI)一直是在导电聚合物领域进行研究的兴趣。然而,许多研究都集中在改善其短期间接,例如其有限的可加工性和普通溶剂中的溶解性。在该研究中,通过用氯仿作为有机溶剂,通过界面聚合产生易溶的水。将聚(乙烯醇)(PVA)和Kappa(κ),IOTA(1)和λ(λ.) - 卡雷仑(κCGN,1cgn,λ.CGN)加入到水层中,以稳定介质中的PANI。 FTIR和解决方案,以及所制造的膜的UV-Vis吸收谱证实的PAni翠绿亚胺盐的存在(PANI-ES)。 FTIR光谱还证实了对应于PANI与CGN的相互作用的峰。此外,PVA-CGN在集成在PVA-CGN矩阵上的PANI纳米纤维的稳定性上发挥了非常大的作用。使用SEM和TEM进一步研究产品的形态。聚合物电解质超级电容器或用于有机太阳能电池的界面层被靶向作为合成水溶性聚苯胺潜在的应用。

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