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Study of EVOH based single ion polymer electrolyte: Composition and microstructure effects on the proton conductivity

机译:EVOH基单离子聚合物电解质的研究:组成和微观结构对质子电导率的影响

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A comb-like EVOH based single ion polymer electrolyte (EVOH-g-SPEG) was synthesized by sulfonification of EVOH grafts 2-(2-chloroethoxy) ethanol (C4H9O2Cl)/2-[2-(2-chloroethxy)ethoxy] ethanol (C6H13O3Cl) with 1, 3-propane sultone. The main chain of the comb-like polymer is hydrophobic polyethylene segments; the side chain is hydrophilic poly (ethylene glycol) (PEG) segment, which can solubilize large amounts of inorganic salts. The sulfortic acid group was introduced onto the end of the PEG side chain. The acid form of SPE was successfully obtained by being dialyzed from the products with acid solution. The saturation water sorption of EVOH-g-SPEG membrane increased with the side chain length and the immersion time. The XRD results indicate that the water in SPE membrane region can destroy the membrane crystalline structure and the water absorption membranes are nearly amorphous. AFM phase images of the hydration membranes clearly show the hydrophilic domains, with sizes increasing from 10 to 35 nm as a function of the side chain length. A phase inversion could be observed when n > 5, which was consistent with a rapid increase in water absorption. And the ion conductivity is also measured by AC impedance. The conductivity is greatly influenced by ion exchange capacity and water sorption. The comb-like EVOH-g-SPEG polymer electrolyte grafts with 2 PEG side chain provides the highest ionic conductivity (1.65 x 10(-3) S cm(-1)). The comb-like polymer could be a candidate as new polymeric electrolyte material for fuel cells and other electrochemical devices. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过对EVOH接枝物2-(2-氯乙氧基)乙醇(C4H9O2Cl)/ 2- [2-(2-氯乙氧基)乙氧基]乙醇进行磺化合成了梳状EVOH基单离子聚合物电解质(EVOH-g-SPEG)( C 6 H 13 O 3 Cl)与1,3-丙烷磺内酯。梳状聚合物的主链是疏水性聚乙烯链段。侧链为亲水性聚乙二醇(PEG)链段,可溶解大量无机盐。将硫酸基团引入到PEG侧链的末端。通过用酸溶液对产物进行渗析,成功获得了SPE的酸形式。 EVOH-g-SPEG膜的饱和吸水率随侧链长度和浸泡时间的增加而增加。 XRD结果表明,SPE膜区域中的水会破坏膜的晶体结构,吸水膜几乎是无定形的。水化膜的AFM相图清楚地显示出亲水域,尺寸从10到35 nm随侧链长度的增加而增加。当n> 5时,可以观察到相转化,这与吸水率的快速增加相一致。离子电导率也通过交流阻抗测量。电导率受离子交换容量和水吸附的影响很大。具有2个PEG侧链的梳状EVOH-g-SPEG聚合物电解质接枝提供最高的离子电导率(1.65 x 10(-3)S cm(-1))。梳状聚合物可以用作燃料电池和其他电化学装置的新型聚合物电解质材料。 (c)2005 Elsevier B.V.保留所有权利。

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