Construction of Diversified Ion Channels in Lithium-Ion Battery Separator Using Polybenzimidazole and Ion-Modified Metal- Organic Framework

被引:14
|
作者
Min, Yu [1 ]
Liu, Xiaoting [1 ]
Guo, Li [1 ]
Wu, Aogui [1 ]
Xian, Dongxia [1 ]
Zhang, Bin [2 ]
Wang, Lei [1 ]
机构
[1] Shenzhen Univ, Coll Mat Sci & Engn, Shenzhen Key Lab Polymer Sci & Technol, Shenzhen 518060, Peoples R China
[2] Shenzhen Acad Metrol & Qual Inspection, Elect & Elect Inspection Div, Shenzhen 518060, Peoples R China
来源
ACS APPLIED ENERGY MATERIALS | 2022年 / 5卷 / 07期
基金
中国国家自然科学基金;
关键词
  lithium-ion battery; lithium-ion transfer e ffi ciency; polybenzimidazole; ion-modi fi ed metal; organic framework; hybrid separator; ETHER KETONE) SEPARATOR; ELECTROCHEMICAL PROPERTIES; POLYPROPYLENE SEPARATOR; GEL ELECTROLYTE; MEMBRANES; PERFORMANCE; HYBRID; SAFETY; SIZE;
D O I
10.1021/acsaem.2c01684
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
ABSTRACT: The preparation of separators using heat-resistant polymers is an effective approach to improve the safety of lithium-ion batteries (LIBs). However, separators using a single heat-resistant polymer compared with the composite modified polymer have low conductivities, which leads to low battery performances. In this study, for the first time, a heat-resistant separator was successfully prepared using an ion-modified metal-organic framework (MOF) and poly(aryl ether benzimidazole)(OPBI). Diversified ion channels were constructed by ion modification combined with phase inversion and physical mixing. The lithium-ion transmission efficiency and safety of the LIBs were effectively improved. The hybrid separator exhibited a satisfactory thermal stability (absence of shrinkage at 200 degrees C for 1 h), higher ionic conductivity (1.46 mS cm-1), and better electrolyte uptake rate. Moreover, the hybrid separator is conducive to inhibiting the growth of Li dendrites. A cell assembled with the hybrid separator delivered a reversible capacity of 157 mA h g-1 at 0.5 C. The capacity retention of the cell was up to 94% after 200 cycles. Thus, the hybrid membrane is a valuable candidate to enhance the safety and electrochemical properties of LIBs.
引用
收藏
页码:9131 / 9140
页数:10
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