Optimization of Block Copolymer Electrolytes for Lithium Metal Batteries

被引:121
|
作者
Devaux, Didier [1 ]
Gle, David [2 ]
Phan, Trang N. T. [2 ]
Gigmes, Didier [2 ]
Giroud, Emmanuelle [3 ]
Deschamps, Marc [4 ]
Denoyel, Renaud [1 ]
Bouchet, Renaud [3 ]
机构
[1] Aix Marseille Univ, CNRS, MADIREL 7246, F-13397 Marseille, France
[2] Aix Marseille Univ, CNRS, ICR 7273, F-13397 Marseille, France
[3] Univ Grenoble Alpes, CNRS, LEPMI, F-38000 Grenoble, France
[4] Blue Solut Co, F-29556 Odet 9, Quimper, France
关键词
SOLID POLYMER ELECTROLYTES; TRIBLOCK COPOLYMERS; MOLECULAR-WEIGHT; IONIC-CONDUCTIVITY; GRAFT COPOLYMER; THIN-FILM; HIGH-PERFORMANCE; PEO; STATE; TRANSPORT;
D O I
10.1021/acs.chemmater.5b01273
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Safety is one of the most important criteria for electrochemical energy storage devices used in large scale applications such as wind or solar farms. In this context, solid polymer electrolytes based on nanostructured block copolymer electrolytes (BCEs) are promising because their properties can be finely tuned by adjusting simultaneously their block chemistries and polymer architectures. However, there is a need to rationalize the different properties of BCE that are optimal for battery applications. We produced by controlled radical polymerization a large number of BCEs based on either (1) linear poly(ethylene oxide) (PEO) or (2) comb PEO as the ionic conductor block, and polystyrene as the structural block. We varied the molecular weight of the PEO-based block, the composition, and the architecture (diblock vs triblock). We performed a systematic analysis of their thermodynamic, ionic transport, and mechanical properties. To verify the potential of BCEs as electrolytes, we evaluated their electrochemical stabilities. Laboratory scale batteries comprising the best BCEs and LiFePO4 as a positive active material were cycled at different rates and temperatures. This process allows the selection of the best architectures and compositions that had been successfully tested in battery prototypes and cycled for more than 600 cycles at high rates without any dendritic growth.
引用
收藏
页码:4682 / 4692
页数:11
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