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聚苯胺(翡翠碱)/淀粉生物基复合材料的物理化学性质及原子尺度相互作用:实验与计算研究

Physicochemical Properties and Atomic-Scale Interactions in Polyaniline (Emeraldine Base)/Starch Bio-Based Composites: Experimental and Computational Investigations.

作者信息

Boudjelida Soufiane, Djellali Souad, Ferkous Hana, Benguerba Yacine, Chikouche Imane, Carraro Mauro

机构信息

Laboratory LMSE, University Mohamed El Bachir El Ibrahimi, Bordj Bou Arreridj 34030, Algeria.

Department of Chemical Sciences, University of Padova, Via Marzolo 1, 35131 Padova, Italy.

出版信息

Polymers (Basel). 2022 Apr 7;14(8):1505. doi: 10.3390/polym14081505.

Abstract

The processability of conductive polymers still represents a challenge. The use of potato starch as a steric stabilizer for the preparation of stable dispersions of polyaniline (emeraldine base, EB) is described in this paper. Biocomposites are obtained by oxidative polymerization of aniline in aqueous solutions containing different ratios of aniline and starch (% /). PANI-EB/Starch biocomposites are subjected to structural analysis (UV-Visible, RAMAN, ATR, XRD), thermal analysis (TGA, DSC), morphological analysis (SEM, Laser Granulometry), and electrochemical analysis using cyclic voltammetry. The samples were also tested for their solubility using various organic solvents. The results showed that, with respect to starch particles, PANI/starch biocomposites exhibit an overall decrease in particles size, which improves both their aqueous dispersion and solubility in organic solvents. Although X-ray diffraction and DSC analyses indicated a loss of crystallinity in biocomposites, the cyclic voltammetry tests revealed that all PANI-EB/Starch biocomposites possess improved redox exchange properties. Finally, the weak interactions at the atomic-level interactions between amylopectin-aniline and amylopectin-PANI were disclosed by the computational studies using DFT, COSMO-RS, and AIM methods.

摘要

导电聚合物的可加工性仍然是一个挑战。本文描述了使用马铃薯淀粉作为空间稳定剂来制备聚苯胺(翠绿亚胺碱,EB)的稳定分散体。通过在含有不同比例苯胺和淀粉(% /)的水溶液中对苯胺进行氧化聚合来获得生物复合材料。对聚苯胺 - EB/淀粉生物复合材料进行结构分析(紫外可见光谱、拉曼光谱、衰减全反射红外光谱、X射线衍射)、热分析(热重分析、差示扫描量热法)、形态分析(扫描电子显微镜、激光粒度分析)以及使用循环伏安法进行电化学分析。还使用各种有机溶剂测试了样品的溶解性。结果表明,相对于淀粉颗粒,聚苯胺/淀粉生物复合材料的颗粒尺寸总体减小,这改善了它们在水中的分散性以及在有机溶剂中的溶解性。尽管X射线衍射和差示扫描量热法分析表明生物复合材料的结晶度有所损失,但循环伏安法测试表明所有聚苯胺 - EB/淀粉生物复合材料都具有改善的氧化还原交换性能。最后,通过使用密度泛函理论(DFT)、导体屏蔽模型(COSMO - RS)和分子中的原子(AIM)方法的计算研究揭示了支链淀粉 - 苯胺和支链淀粉 - 聚苯胺之间原子水平相互作用的弱相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8915/9029945/9e00af55f1d4/polymers-14-01505-g001.jpg

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