Abe Ayaka, Mori Daisuke, Wang Zhichao, Taminato Sou, Takeda Yasuo, Yamamoto Osamu, Imanishi Nobuyuki
Graduate School of Engineering, Mie University, Tsu, Mie, 514-8507, Japan.
Research Center for Integrated Materials and Interfaces for Sustainable Energy, Mie University, Tsu, Mie, 514-8507, Japan.
ChemistryOpen. 2024 Sep;13(9):e202400041. doi: 10.1002/open.202400041. Epub 2024 Apr 15.
Lithium-ion secondary batteries (LIB) with high energy density have attracted much attention for electric vehicle (EV) applications. However, LIBs have a safety problem because these batteries contain a flammable organic electrolyte. As such, all-solid secondary batteries that are not flammable have been extensively reported recently. In this study, we have focused on polymer electrolytes, which is flexible and is expected to address the safety problem. However, the conventional polymer electrolytes have low electrial conductivity at room temperature. Various attempts have been made to solve this problem, such as the addition of inorganic fillers and ionic liquids; however, these composite polymer electrolytes have not yet reached a practical level of lithium-ion conductivity. In this study, high electrical conductivity and lithium dendrite formation-free PEO based composite electrolytes are developed with both a filler of LiLaZrTaO and liquid plasticizers of tetraethylene glycol dimethyl ether and 1,2 dimethoxyethane. The proposed flexible polymer electrolyte shows a high electrical conduciviy of 6.01×10 S cm at 25 °C.
具有高能量密度的锂离子二次电池(LIB)在电动汽车(EV)应用中备受关注。然而,LIB存在安全问题,因为这些电池含有易燃的有机电解质。因此,最近大量报道了不易燃的全固态二次电池。在本研究中,我们关注的是聚合物电解质,它具有柔韧性,有望解决安全问题。然而,传统的聚合物电解质在室温下电导率较低。人们已经进行了各种尝试来解决这个问题,比如添加无机填料和离子液体;然而,这些复合聚合物电解质的锂离子电导率尚未达到实际应用水平。在本研究中,通过使用LiLaZrTaO填料以及四甘醇二甲醚和1,2 - 二甲氧基乙烷液体增塑剂,开发出了具有高电导率且无锂枝晶形成的基于聚环氧乙烷(PEO)的复合电解质。所提出的柔性聚合物电解质在25°C时显示出6.01×10⁻⁵ S/cm的高电导率。