Tuning the LiF content in the SEI by engineering the molecular structures of porous organic polymers for solid-state lithium metal batteries

被引:29
作者
Zhou, Shi [1 ]
Zhu, Yiting [1 ]
Hu, Haoran [1 ]
Li, Chenghan [1 ]
Jiang, Jie [1 ,2 ]
Huang, Jianyu [1 ,3 ]
Zhang, Biao [1 ,2 ]
机构
[1] Xiangtan Univ, Sch Mat Sci & Engn, Xiangtan 411105, Peoples R China
[2] Xiangtan Univ, Key Lab Low Dimens Mat & Applicat Technol, Minist Educ, Hunan 411105, Peoples R China
[3] Yanshan Univ, Clean Nano Energy Ctr, State Key Lab Metastable Mat Sci & Technol, Qinhuangdao 066004, Peoples R China
基金
中国国家自然科学基金;
关键词
ELECTROLYTE; INTERPHASE; DENDRITE; ANODE;
D O I
10.1039/d2ta09896b
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
LiF, which is considered as a key component of the solid electrolyte interface (SEI), can promote the uniform deposition of lithium. However, excessive LiF will limit the transport of lithium ions (Li+) in the SEI, resulting in low coulombic efficiency and lithium dendrite growth. Regulating the LiF concentration in the SEI is challenging but critical to the development of solid-state lithium metal batteries (SSLMBs). Herein, we synthesized porous organic polymers (POPs) that can be flexibly modified at the molecular level. These modified POPs (denoted as POPs-X-FP, X = 2, 3, 4) are added into a PEO electrolyte as fillers to form composite solid electrolytes (denoted as CSE-X-FP, X = 2, 3, 4, respectively). CSE-X-FP have different catalytic decomposition capabilities of TFSI- anions in the electrolyte due to the different fluorine atom substitution positions on the benzene ring of the POPs. Consequently, the LiF concentration in the SEI can be optimized by tuning the fluorine atom substitution positions on the benzene rings of the POPs to boost the performance of PEO based ASSLMBs. Using the LiF optimized SEI, the LiFePO4(LFP)//CSE-4-FP//Li full cell delivered a long cycle life of 1200 cycles with an initial capacity of 160.7 mA h g(-1) at 0.5C. This study provides a new strategy to regulate the LiF content in the SEI layer to boost the performance of SSLMBs.
引用
收藏
页码:5636 / 5644
页数:9
相关论文
共 45 条
[1]   Lithium Dendrite in All-Solid-State Batteries: Growth Mechanisms, Suppression Strategies, and Characterizations [J].
Cao, Daxian ;
Sun, Xiao ;
Li, Qiang ;
Natan, Avi ;
Xiang, Pengyang ;
Zhu, Hongli .
MATTER, 2020, 3 (01) :57-94
[2]   A Highly Reversible, Dendrite-Free Lithium Metal Anode Enabled by a Lithium-Fluoride-Enriched Interphase [J].
Cui, Chunyu ;
Yang, Chongyin ;
Eidson, Nico ;
Chen, Ji ;
Han, Fudong ;
Chen, Long ;
Luo, Chao ;
Wang, Peng-Fei ;
Fan, Xiulin ;
Wang, Chunsheng .
ADVANCED MATERIALS, 2020, 32 (12)
[3]   High-performance all-solid-state polymer electrolyte with fast conductivity pathway formed by hierarchical structure polyamide 6 nanofiber for lithium metal battery [J].
Gao, Lu ;
Li, Jianxin ;
Ju, Jingge ;
Cheng, Bowen ;
Kang, Weimin ;
Deng, Nanping .
JOURNAL OF ENERGY CHEMISTRY, 2021, 54 :644-654
[4]   Fatigue-Resistant Interfacial Layer for Safe Lithium Metal Batteries [J].
Gao, Rui-Min ;
Yang, Hua ;
Wang, Cao-Yu ;
Ye, Huan ;
Cao, Fei-Fei ;
Guo, Zai-Ping .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (48) :25508-25513
[5]   Polymer-inorganic solid-electrolyte interphase for stable lithium metal batteries under lean electrolyte conditions [J].
Gao, Yue ;
Yan, Zhifei ;
Gray, Jennifer L. ;
He, Xin ;
Wang, Daiwei ;
Chen, Tianhang ;
Huang, Qingquan ;
Li, Yuguang C. ;
Wang, Haiying ;
Kim, Seong H. ;
Mallouk, Thomas E. ;
Wang, Donghai .
NATURE MATERIALS, 2019, 18 (04) :384-+
[6]   Ultrahigh Performance All Solid-State Lithium Sulfur Batteries: Salt Anion's Chemistry-Induced Anomalous Synergistic Effect [J].
Gebresilassie Eshetu, Gebrekidan ;
Judez, Xabier ;
Li, Chunmei ;
Martinez-Ibanez, Maria ;
Gracia, Ismael ;
Bondarchuk, Oleksandr ;
Carrasco, Javier ;
Rodriguez-Martinez, Lide M. ;
Zhang, Heng ;
Armand, Michel .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, 140 (31) :9921-9933
[7]   Revealing the Role of Fluoride-Rich Battery Electrode Interphases by Operando Transmission Electron Microscopy [J].
Gong, Chen ;
Pu, Shengda D. ;
Gao, Xiangwen ;
Yang, Sixie ;
Liu, Junliang ;
Ning, Ziyang ;
Rees, Gregory J. ;
Capone, Isaac ;
Pi, Liquan ;
Liu, Boyang ;
Hartley, Gareth O. ;
Fawdon, Jack ;
Luo, Jun ;
Pasta, Mauro ;
Grovenor, Chris R. M. ;
Bruce, Peter G. ;
Robertson, Alex W. .
ADVANCED ENERGY MATERIALS, 2021, 11 (10)
[8]   Solid-State Electrolyte Design for Lithium Dendrite Suppression [J].
Ji, Xiao ;
Hou, Singyuk ;
Wang, Pengfei ;
He, Xinzi ;
Piao, Nan ;
Chen, Ji ;
Fan, Xiulin ;
Wang, Chunsheng .
ADVANCED MATERIALS, 2020, 32 (46)
[9]   PIM-1 as a Multifunctional Framework to Enable High-Performance Solid-State Lithium-Sulfur Batteries [J].
Ji, Yuchen ;
Yang, Kai ;
Liu, Mingqiang ;
Chen, Shiming ;
Liu, Xinhua ;
Yang, Biao ;
Wang, Zijian ;
Huang, Weiyuan ;
Song, Zhibo ;
Xue, Shida ;
Fu, Yanda ;
Yang, Luyi ;
Miller, Thomas S. ;
Pan, Feng .
ADVANCED FUNCTIONAL MATERIALS, 2021, 31 (47)
[10]  
Jin S. K., 2004, ELECTROCHIM ACTA, V50, P531