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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Melt-compounded salt-containing poly(ethylene oxide)/clay nanocomposites for polymer electrolyte membranes
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Melt-compounded salt-containing poly(ethylene oxide)/clay nanocomposites for polymer electrolyte membranes

机译:聚合物电解质膜的熔体复合含盐聚环氧乙烷/粘土纳米复合材料

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摘要

The present study demonstrates the use of a simple and versatile melt-compounding route to prepare NaClO4-containing poly(ethylene oxide) PEO/clay nanocomposites combining excellent mechanical properties with a competitive level of the ionic conductivity. The nanostructure and the resulting thermal, mechanical and conductive properties of the salt-containing PEO/clay nanocomposites were found to be highly sensitive to the clay type, i.e. aspect ratio of the clay, to the presence of an organic modifier in the intergallery spacing, and to the salt concentration. The highest increase of the shear storage modulus is obtained in the presence of single silicate layers, thus an exfoliated nanostructure, having a high aspect ratio. These structures are only obtained with an (polar) organically modified clay (Cloisite 30B), regardless of the presence of salt. The use of non-organically modified clays (Cloisite Na+ and Laponite) resulted in intercalated nanocomposites, with only a minor improvement in stiffness. A strong interaction between the Na+ from NaClO4 and the Cloisite 30B silicate layers might be responsible for an increased PEO crystallinity and resultant additional increase in stiffness. A mechanism is proposed whereby the Na+ ions are drawn away from the PEO phase, to be complexed by the silicate layers, or even ion-exchanged with modifier cations. The addition of clay did not greatly affect the ion conductivity below the melt temperature of PEO. At higher temperatures, the nanocomposites displayed only slightly lower conductivities compared to the PEO/NaClO4 complex, due to the presence of the clay platelets. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本研究证明了使用简单且通用的熔体混合路线来制备结合了优异机械性能和竞争性离子电导率的含NaClO4的聚环氧乙烷PEO /粘土纳米复合材料。发现含盐的PEO /粘土纳米复合材料的纳米结构及其所产生的热,机械和导电性能对粘土类型(即粘土的长径比),在画廊间距中有机改性剂的存在高度敏感,和盐浓度。剪切储能模量的最大增加是在存在单个硅酸盐层的情况下获得的,因此剥落的纳米结构具有高的长宽比。这些结构仅使用(极性)有机改性粘土(Cloisite 30B)获得,与盐的存在无关。使用非有机改性的粘土(Cloisite Na +和Laponite)会产生插层的纳米复合材料,而刚度却只有很小的提高。来自NaClO4的Na +和Cloisite 30B硅酸盐层之间的强相互作用可能是增加PEO结晶度并导致刚度增加的原因。提出了一种机制,其中将Na +离子从PEO相中抽出,与硅酸盐层络合,甚至与改性剂阳离子进行离子交换。在PEO的熔融温度以下,粘土的添加对离子电导率没有很大影响。在较高的温度下,由于存在粘土薄片,与PEO / NaClO4配合物相比,纳米复合材料的电导率仅略低。 (c)2005 Elsevier Ltd.保留所有权利。

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