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首页> 外文期刊>Polymer engineering and science >Novel Colloidal Nanofiber Electrolytes From PVA-Organoclay/Poly(MA-alt-MVE), and Their NaOH and Ag-Carrying Polymer Complexes
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Novel Colloidal Nanofiber Electrolytes From PVA-Organoclay/Poly(MA-alt-MVE), and Their NaOH and Ag-Carrying Polymer Complexes

机译:PVA-有机粘土/聚(MA-alt-MVE)的新型胶体纳米纤维电解质及其NaOH和载银聚合物配合物

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摘要

Novel multifunctional polymer nanofiber electrolytes with covalence crosslinked structures from various solution blends of reactive intercalated poly(vinyl alcohol)/octadecylamine montmorillonite (as a matrix polymer), poly(maleic anhydride-alt-methyl vinyl ether) (as a partner polymer) and their NaOH-absorbing and Ag-carrying polymer complexes were fabricated via electrospinning. Chemical, physical, morphological, and electrical properties of nanofiber structures were investigated by FTIR, XRD, SEM, and electrical analysis methods. Ag precursors in fiber composites significantly improved phase separation processing, fiber morphologies, diameter distributions, and electrical properties of the fibers. In situ generation of Ag nanoparticles and their distribution on nanofiber surfaces during fiber formation occurred via complex formation between silver cations and electronegative functional groups from both matrix and partner polymers as stabilizing/reducing agents. Electrical resistance and conductivity strongly depended on matrix/partner polymer ratios and absorption time of NaOH solution on nanofibers. Addition of NaOH changed the electrical properties of fiber structures from almost dielectric state to excellent conductivity form. The fabricated unique nanofiber electrolytes are promising candidates for applications in power and fuel cell nanotechnology, electrochemical, and bioengineering processes as reactive semiconductive platforms. (C) 2015 Society of Plastics Engineers
机译:具有共价交联结构的新型多功能聚合物纳米纤维电解质,由反应性插层聚(乙烯醇)/十八烷基蒙脱土(作为基质聚合物),聚(马来酸酐-alt-甲基乙烯基醚)(作为伙伴聚合物)的各种溶液共混物组成通过静电纺丝制备了吸收NaOH和载有Ag的聚合物复合物。通过FTIR,XRD,SEM和电分析方法研究了纳米纤维结构的化学,物理,形态和电学性质。纤维复合材料中的Ag前驱体显着改善了相分离过程,纤维形态,直径分布和纤维的电性能。 Ag纳米粒子的原位生成及其在纤维形成过程中在纳米纤维表面的分布是通过银阳离子与作为稳定剂/还原剂的基质聚合物和配偶体聚合物之间的负离子官能团之间的复杂形成而发生的。电阻和电导率很大程度上取决于基体/伙伴聚合物的比例以及NaOH溶液在纳米纤维上的吸收时间。 NaOH的添加将纤维结构的电性能从几乎介电状态改变为优异的电导率形式。所制造的独特纳米纤维电解质是有希望的候选材料,可作为动力半导体平台在功率和燃料电池纳米技术,电化学和生物工程工艺中应用。 (C)2015年塑料工程师学会

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