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Cross-Linked Electrospun Poly(ethylene oxide) Fiber Mats as Structured Polymer-Gel Electrolytes

机译:交联电纺聚(环氧乙烷)纤维垫作为结构化聚合物 - 凝胶电解质

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Poly(ethylene oxide) (PEO) containing pentaerythritol triacrylate (PETA) was electrospun to yield fiber mats that were subsequently crosslinked by exposure to UV irradiation. These mats were then supplemented with lithium perchlorate and swollen with ethylene/dimethyl carbonates to generate a structured polymer-gel electrolyte for Li-polymer battery applications. The fibrous mats were found to be composed of a nonwoven collection of ca. 1 μm diameter PEO fibers with up to 85% porosity. Following UV exposure, the mats were rendered insoluble by chemical crosslinking, yielding gel fractions in excess of 80%. Upon incorporation of a liquid lithium ion electrolyte, the swollen mats were shown to maintain the fiberous framework and exhibit conductivities as high as 1.2 × 10~(-2) S/cm at room temperature. In contrast, a control mat of electrospun poly(vinylidene fluoride) containing fibers of comparable dimensions and identical electrolyte loading was found to yield a conductivity of only 5 × 10~(-3) S/cm.
机译:含有季戊四醇三丙烯酸酯(PETA)的聚(环氧乙烷)(PEO)是Electrom散,得到纤维垫,随后通过暴露于UV辐射而交联。然后将这些垫补充有高氯酸锂,并用乙烯/二甲基碳酸酯溶胀,以产生用于锂聚合物电池应用的结构化聚合物 - 凝胶电解质。发现纤维垫由无纺布集合组成。 1μm直径的PEO纤维,孔隙率高达85%。在紫外线暴露之后,通过化学交联使垫子不溶,产生超过80%的凝胶级分。在掺入液态锂离子电解质时,显示溶胀的垫子以保持光纤框架,并在室温下表现出高达1.2×10〜(-2)S / cm的电导率。相反,发现含有可比较尺寸的纤维和相同电解质载荷的电纺聚(偏二氟乙烯)的控制垫,产生仅5×10〜(-3)S / cm的电导率。

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