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提高结晶聚合物电解质的电导率。

Increasing the conductivity of crystalline polymer electrolytes.

作者信息

Christie Alasdair M, Lilley Scott J, Staunton Edward, Andreev Yuri G, Bruce Peter G

机构信息

School of Chemistry, University of St Andrews, St Andrews KY16 9ST, UK.

出版信息

Nature. 2005 Jan 6;433(7021):50-3. doi: 10.1038/nature03186.

Abstract

Polymer electrolytes consist of salts dissolved in polymers (for example, polyethylene oxide, PEO), and represent a unique class of solid coordination compounds. They have potential applications in a diverse range of all-solid-state devices, such as rechargeable lithium batteries, flexible electrochromic displays and smart windows. For 30 years, attention was focused on amorphous polymer electrolytes in the belief that crystalline polymer:salt complexes were insulators. This view has been overturned recently by demonstrating ionic conductivity in the crystalline complexes PEO6:LiXF6 (X = P, As, Sb); however, the conductivities were relatively low. Here we demonstrate an increase of 1.5 orders of magnitude in the conductivity of these materials by replacing a small proportion of the XF6- anions in the crystal structure with isovalent N(SO2CF3)2- ions. We suggest that the larger and more irregularly shaped anions disrupt the potential around the Li+ ions, thus enhancing the ionic conductivity in a manner somewhat analogous to the AgBr(1-x)I(x) ionic conductors. The demonstration that doping strategies can enhance the conductivity of crystalline polymer electrolytes represents a significant advance towards the technological exploitation of such materials.

摘要

聚合物电解质由溶解在聚合物(例如聚环氧乙烷,PEO)中的盐组成,是一类独特的固体配位化合物。它们在各种全固态器件中具有潜在应用,如可充电锂电池、柔性电致变色显示器和智能窗。30年来,人们一直关注非晶态聚合物电解质,认为结晶聚合物:盐络合物是绝缘体。最近通过证明结晶络合物PEO6:LiXF6(X = P、As、Sb)中的离子导电性,这一观点被推翻;然而,其电导率相对较低。在此,我们通过用等价位的N(SO2CF3)2-离子取代晶体结构中一小部分XF6-阴离子,证明这些材料的电导率提高了1.5个数量级。我们认为,更大且形状更不规则的阴离子会扰乱Li+离子周围的电势,从而以某种类似于AgBr(1-x)I(x)离子导体的方式提高离子导电性。掺杂策略可提高结晶聚合物电解质电导率的证明,代表了此类材料在技术开发方面的重大进展。

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