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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >Multifunctional electroactive electrospun nanofiber structures from water solution blends of PVA/ODA–MMT and poly(maleic acid-alt-acrylic acid): effects of Ag, organoclay, structural rearrangement and NaOH doping factors - IOPscience
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Multifunctional electroactive electrospun nanofiber structures from water solution blends of PVA/ODA–MMT and poly(maleic acid-alt-acrylic acid): effects of Ag, organoclay, structural rearrangement and NaOH doping factors - IOPscience

机译:PVA / ODA-MMT和聚(马来酸-alt-丙烯酸)水溶液共混物形成的多功能电活性静电纺纳米纤维结构:Ag,有机粘土,结构重排和NaOH掺杂因子的影响-IOPscience

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Novel multifunctional colloidal polymer nanofiber electrolytes were fabricated by green reactive electrospinning nanotechnology from various water solution/dispersed blends of poly (vinyl alcohol-co-vinyl acetate) (PVA)/octadecyl amine-montmorillonite (ODA–MMT) as matrix polymer nanocomposite and poly(maleic acid-alt-acrylic acid) (poly(MAc-alt-AA) and/or its Ag-carrying complex as partner copolymers. Polymer nanofiber electrolytes were characterized using FTIR, XRD, thermal (DSC, TGA–DTG), SEM, and electrical analysis methods. Effects of partner copolymers, organoclay, in situ generated silver nanoparticles (AgNPs), and annealing procedure on physical and chemical properties of polymer composite nanofibers were investigated. The electrical properties (resistance, conductivity, activation energy) of nanofibers with/without NaOH doping agent were also evaluated. This work presented a structural rearrangement of nanofiber mats by annealing via decarboxylation of anhydride units with the formation of new conjugated double bond sites onto partner copolymer main chains. It was also found that the semiconductor behaviors of nanofiber structures were essentially improved with increasing temperature and fraction of partner copolymers as well as presence of organoclay and AgNPs in nanofiber composite.
机译:新型多功能胶体聚合物纳米纤维电解质是通过绿色反应电纺丝纳米技术,由多种水溶液/聚乙烯醇-共乙酸乙烯酯(PVA)/十八胺-蒙脱石(ODA-MMT)作为基质聚合物纳米复合材料和聚(马来酸-丙烯酸-丙稀酸)(聚(MAc-alt-AA)和/或其载有银的配合物作为伙伴共聚物。聚合物纳米纤维电解质的特征在于FTIR,XRD,热(DSC,TGA–DTG),SEM研究了共聚共聚物,有机粘土,原位生成的银纳米颗粒(AgNPs)和退火工艺对聚合物复合纳米纤维理化性质的影响,并研究了纳米纤维的电学性质(电阻,电导率,活化能)还评估了使用/不使用NaOH掺杂剂的情况,这项工作提出了通过酸酐单元与苯酐的脱羧退火进行纳米纤维垫的结构重排。在伴侣共聚物主链上形成新的共轭双键位点。还发现纳米纤维结构的半导体性能随着温度和伴侣共聚物的分数的增加以及纳米纤维复合物中有机粘土和AgNPs的存在而基本上得到改善。

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