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首页> 外文期刊>Angewandte Chemie >Stable Conversion Chemistry-Based Lithium Metal Batteries Enabled by Hierarchical Multifunctional Polymer Electrolytes with Near-Single Ion Conduction
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Stable Conversion Chemistry-Based Lithium Metal Batteries Enabled by Hierarchical Multifunctional Polymer Electrolytes with Near-Single Ion Conduction

机译:由具有近单离子传导的分层多功能聚合物电解质使基于稳定的转换化学化学锂金属电池

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摘要

The low Coulombic efficiency and serious safety issues resulting from uncontrollable dendrite growth have severely impeded the practical applications of lithium (Li) metal anodes. Herein we report a stable quasi-solid-state Li metal battery by employing a hierarchical multifunctional polymer electrolyte (HMPE). This hybrid electrolyte was fabricated via in situ copolymerizing lithium 1-[3-(methacryloyloxy)propylsulfonyl]-1-(trifluoromethanesulfonyl)imide (LiMTFSI) and pentaerythritol tetraacrylate (PETEA) monomers in traditional liquid electrolyte, which is absorbed in a poly(3,3-dimethylacrylic acid lithium) (PDAALi)-coated glass fiber membrane. The well-designed HMPE simultaneously exhibits high ionic conductivity (2.24x10(-3)Scm(-1) at 25 degrees C), near-single ion conducting behavior (Li ion transference number of 0.75), good mechanical strength and remarkable suppression for Li dendrite growth. More intriguingly, the cation permselective HMPE efficiently prevents the migration of negatively charged iodine (I) species, which provides the as-developed Li-I batteries with high capacity and long cycling stability.
机译:由于无法控制的树突生长导致的低库仑效率和严重的安全问题严重阻碍了锂(LI)金属阳极的实际应用。在此,通过采用分层多功能聚合物电解质(HMPE)报告稳定的准固态Li金属电池。该杂化电解质通过原位共聚锂1- [3-(甲基丙烯酰氧基)丙基磺酰基] -1-(三氟甲酰基磺酰基)酰亚胺(LiMTFSI)和季戊四醇四丙烯酸酯(Petea)单体中的传统液体电解质,其在聚(3 ,3-二甲基丙烯酸锂)(PDAALI) - 涂覆玻璃纤维膜。精心设计的HMPE同时表现出高离子电导率(2.24×10(-3)SCM(-1),在25℃),接近单离子导电行为(Li离子转移数为0.75),机械强度良好,抑制良好李枝曲霉生长。更有趣的是,阳离子渗滤性HMPE有效地防止带负电荷的碘(I)物种的迁移,这为具有高容量和长循环稳定性的AS开发的LI-I电池提供。

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