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开发锂聚合物电池的新方法。

New approaches to developing lithium polymer batteries.

作者信息

Scrosati B

机构信息

Department of Chemistry, University La Sapienza, Rome, Italy.

出版信息

Chem Rec. 2001;1(2):173-81. doi: 10.1002/tcr.7.

Abstract

The electrochemical and physical-chemical properties of two families of lithium ion conducting membranes, i.e., the blends between high molecular weight poly(ethylene oxide) with a lithium salt commonly named "polymer electrolytes" and the gels of liquid solutions in a polymer matrix commonly named "gel electrolytes," are repoted and discussed. Particular attention is devoted to the newly developed approach of dispersing ceramic powders at the nanoscale particle dimension into the two types of membranes. This leads "nanocomposite" membranes having unique features, such as improved transport and interfacial properties in the case of the polymer electrolytes and enhanced liquid retention capability in the case of the gel electrolytes. Finally, the use of the gel electrolytes for the development of new-design, plastic-like, lithium-ion batteries is illustrated.

摘要

报道并讨论了两类锂离子传导膜的电化学和物理化学性质,即高分子量聚环氧乙烷与锂盐的共混物(通常称为“聚合物电解质”)以及聚合物基质中液体溶液的凝胶(通常称为“凝胶电解质”)。特别关注了新开发的将纳米级颗粒尺寸的陶瓷粉末分散到这两种膜中的方法。这产生了具有独特特性的“纳米复合”膜,例如在聚合物电解质的情况下改善了传输和界面性质,在凝胶电解质的情况下增强了液体保留能力。最后,说明了凝胶电解质在新型、类似塑料的锂离子电池开发中的应用。

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