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结晶态聚合物电解质PEO6:LiXF6(X = P、As、Sb)中的离子电导率。

Ionic conductivity in the crystalline polymer electrolytes PEO6:LiXF6, X = P, As, Sb.

作者信息

Stoeva Zlatka, Martin-Litas Isabelle, Staunton Edward, Andreev Yuri G, Bruce Peter G

机构信息

School of Chemistry, University of St. Andrews, Purdie Building, North Haugh, St. Andrews KY16 9ST, UK.

出版信息

J Am Chem Soc. 2003 Apr 16;125(15):4619-26. doi: 10.1021/ja029326t.

Abstract

Ionically conducting polymers (salts dissolved in a polymer matrix) are of great interest because they uniquely exhibit ionic conductivity in a soft but solid membrane. As such, they are critical to the development of devices such as all-solid-state lithium batteries. The established view of ionic conductivity in polymer electrolytes is that this occurs in amorphous materials above their glass transition temperature and that crystalline polymer electrolytes are insulators. In contrast, we show that three crystalline polymer electrolytes, poly(ethylene oxide)(6):LiXF(6), X = P, As, Sb, not only conduct but do so better than the analogous amorphous phases! It is also shown that the conductivities of all three 6:1 complexes are similar, consistent with the dimension of the bottlenecks to conduction derived from their crystal structures. An increase in ionic conductivity with reduction of molecular weight of the crystalline polymer electrolyte (from 2000 to 1000) is reported and shown to relate to the increase in crystallite size on reducing molecular weight.

摘要

离子导电聚合物(盐溶解在聚合物基质中)备受关注,因为它们在柔软但固态的膜中独特地展现出离子导电性。因此,它们对于诸如全固态锂电池等器件的发展至关重要。关于聚合物电解质中离子导电性的既定观点是,这发生在高于其玻璃化转变温度的无定形材料中,并且结晶聚合物电解质是绝缘体。相比之下,我们表明三种结晶聚合物电解质,聚(环氧乙烷)(6):LiXF(6),X = P、As、Sb,不仅具有导电性,而且比类似的无定形相表现得更好!还表明所有三种6:1配合物的电导率相似,这与从它们的晶体结构得出的传导瓶颈尺寸一致。据报道,结晶聚合物电解质分子量降低(从2000降至1000)时离子电导率增加,并且表明这与分子量降低时微晶尺寸的增加有关。

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