Conductivity and Morphology Correlations of Ionic-Liquid/Lithium-Salt/Block Copolymer Nanostructured Hybrid Electrolytes

被引:29
|
作者
Metwalli, Ezzeldin [1 ]
Kaeppel, Maximilian V. [1 ]
Schaper, Simon J. [1 ]
Kriele, Armin [2 ]
Gilles, Ralph [3 ]
Raftopoulos, Konstantinos N. [1 ,4 ]
Mueller-Buschbaum, Peter [1 ]
机构
[1] Tech Univ Munich, Lehrstuhl Funkt Mat, Phys Dept, James Franck Str 1, D-85748 Garching, Germany
[2] German Engn Mat Sci Ctr GEMS, Helmholtz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany
[3] Tech Univ Munich, Heinz Maier Leibnitz Zentrum MLZ, Lichtenbergstr 1, D-85747 Garching, Germany
[4] Cracow Univ Technol, Dept Chem & Technol Polymers, Warszawska 24, PL-31155 Krakow, Poland
来源
ACS APPLIED ENERGY MATERIALS | 2018年 / 1卷 / 02期
关键词
battery; hybrid electrolyte; block copolymer; self-assembly; SAXS; DIBLOCK COPOLYMER; MOLECULAR-WEIGHT; POLYMER ELECTROLYTES; PHASE-BEHAVIOR; POLYETHYLENE OXIDE; BLOCK-COPOLYMERS; ORDER-DISORDER; LIQUID; TRANSPORT; CRYSTALLIZATION;
D O I
10.1021/acsaem.7b00173
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
The most daunting challenge in solid-state polymer electrolyte membranes (PEMs) is to achieve high ionic conductivity close to that of the liquid electrolytes, while maintaining enhanced thermal and mechanical performances. The ionic conductivity in relation to the morphology of PEMs composed of diblock copolymer (polystyrene-block-poly(ethylene oxide); PSb-PEO), lithium salt (lithium trifluoromethanesulfonate; LiTO, and ionic liquid (1-ethyl-3-methylimidazolium trifluoromethanesulfonate; EMIMTf) is investigated. The optimized functional nanostructured PEMs are achieved with room-temperature ionic conductivities higher than a 1 mS cm(-1) benchmark. The morphology of these microphase-separated electrolytes is composed of a major soft high ionic-conductive PEO/LiTUIL matrix with minor glassy high-modulus PS nanodomains. The ionic-liquid upload in hybrid electrolytes inhibits the PEO crystallization, reduces the PEO glass transition temperature, promotes an extended PEO chain conformation, and enhances the solubilization of the non-dissociated lithium salt at the PS-PEO domain interfaces. These intrinsic properties caused by the ionic-liquid loading serve to achieve stable and robust nanostructured electrolyte membranes and can explain the achieved benchmark conductivity.
引用
收藏
页码:666 / 675
页数:19
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