Electrolyte Design for NMC811||SiOx-Gr Lithium-Ion Batteries with Excellent Low-Temperature and High-Rate Performance

被引:1
作者
He, Wei [1 ]
Yeddala, Munaiah [1 ]
Rynearson, Leah [1 ]
Lucht, Brett [1 ]
机构
[1] Univ Rhode Isl, Dept Chem, Kingston, RI 02881 USA
关键词
batteries; -; lithium; electrolyte; solid electrolyte interphase; ANODE; CARBONATE; ALLOY;
D O I
10.1149/1945-7111/ad6934
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The use of high-nickel NMC811 cathode and SiOx-Gr anode can greatly improve the overall energy densities of lithium-ion batteries. However, the unfavorable solid electrolyte interphase (SEI) layer generated from the decomposition of EC-based electrolytes lead to the poor cycling stability of NMC811||SiOx-Gr cells. Here we report an electrolyte design of 1.5 M LiPF6 dissolved in FEC/MA/BN 2:2:6 by volume, which can form thin, robust, and homogeneous SEI layer to greatly improve the charge transfer at the electrode-electrolyte interface. Importantly, the designed electrolyte shows an outstanding low temperature performance that it can deliver a capacity of 123.3 mAh g(-1) after 50 cycles at -20 degrees C with a current density of 0.5 C, overwhelming the standard EC-based electrolyte (1.2 M LiPF6 EC/EMC 3:7 by volume) with a capacity of 35.7 mAh g(-1). The electrolyte also has a superior rate performance that it achieves a capacity of 122.5 mAh g(-1) at a high current density of 10 C. Moreover, the LTE electrolyte holds the great potential of extreme fast-charging ability because of the large part of CC contribution in the CCCV charging model at high charging current densities.
引用
收藏
页数:7
相关论文
共 50 条
[21]   Gadolinium suicide/silicon composite with excellent high-rate performance as lithium-ion battery anode [J].
Usui, Hiroyuki ;
Nomura, Masahito ;
Nishino, Hiroki ;
Kusatsu, Masatoshi ;
Murota, Tadatoshi ;
Sakaguchi, Hiroki .
MATERIALS LETTERS, 2014, 130 :61-64
[22]   High-rate formation cycle of Co3O4 nanoparticle for superior electrochemical performance in lithium-ion batteries [J].
Cheong, Jun Young ;
Chang, Joon Ha ;
Cho, Su-Ho ;
Jung, Ji-Won ;
Kim, Chanhoon ;
Dae, Kyun Seong ;
Yuk, Jong Min ;
Kim, Il-Doo .
ELECTROCHIMICA ACTA, 2019, 295 :7-13
[23]   Optimized Preparation and Potential Range for Spinel Lithium Titanate Anode for High-Rate Performance Lithium-Ion Batteries [J].
Haghipour, Amir ;
Arnold, Stefanie ;
Oehm, Jonas ;
Schmidt, Dominik ;
Gonzalez-Garcia, Lola ;
Nakamura, Hitoshi ;
Kraus, Tobias ;
Knoblauch, Volker ;
Presser, Volker .
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH, 2025, 6 (01)
[24]   High-specific-capacity molybdate anode materials for lithium-ion batteries with good low-temperature performance [J].
Ge, Xiuli ;
Zhu, Yaru ;
Cao, Zhenbo ;
Jia, Jinsheng ;
Zhao, Qian ;
Chang, Siliang ;
Liu, Shanshan ;
Yang, Xin ;
Feng, Kai .
JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 903
[25]   Ester-based electrolytes for graphite solid electrolyte interface layer stabilization and low-temperature performance in lithium-ion batteries [J].
Kim, Chan-Gyo ;
Jekal, Suk ;
Kim, Jiwon ;
Kim, Ha-Yeong ;
Park, Gyu-Sik ;
Ra, Yoon-Ho ;
Noh, Jungchul ;
Yoon, Chang-Min .
CARBON LETTERS, 2024, 34 (08) :2113-2125
[26]   Electronic effect tuned ion-dipole interactions for low-temperature electrolyte design of LiFePO4-based lithium-ion batteries [J].
Li, Chunlei ;
Zhang, Junwei ;
Sun, Jinlong ;
Zhao, Yanjun ;
Zhou, Junfei ;
Wang, Hui ;
Yao, Yijie ;
Hu, Ling ;
Zhu, Junlong ;
Zhang, Ningshuang ;
Zhang, Lijuan ;
Li, Shiyou ;
Zhao, Dongni .
JOURNAL OF ENERGY STORAGE, 2024, 102
[27]   The advanced copper oxide coating separator enhances the electrochemical performance of high-rate lithium-ion batteries [J].
Yuan, Yajie ;
Li, Yin ;
Hu, Junxian ;
Zhang, Keyu ;
Zhang, Shaoze ;
Yang, Bin ;
Yao, Yaochun .
JOURNAL OF POWER SOURCES, 2024, 623
[28]   A Study on High-Rate Performance of Graphite Nanostructures Produced by Ball Milling as Anode for Lithium-Ion Batteries [J].
Ahmadabadi, Vahide Ghanooni ;
Rahman, Md Mokhlesur ;
Chen, Ying .
MICROMACHINES, 2023, 14 (01)
[29]   Low-temperature lithium-ion batteries: challenges and progress of surface/interface modifications for advanced performance [J].
Mei, Pan ;
Zhang, Yuan ;
Zhang, Wei .
NANOSCALE, 2023, 15 (03) :987-997
[30]   Understanding the Roles of Tris(trimethylsilyl) Phosphite (TMSPi) in LiNi0.8Mn0.1Co0.1O2 (NMC811)/Silicon-Graphite (Si-Gr) Lithium-Ion Batteries [J].
Liu, Haidong ;
Naylor, Andrew J. ;
Menon, Ashok Sreekumar ;
Bran, William R. ;
Edstrom, Kristina ;
Younesi, Reza .
ADVANCED MATERIALS INTERFACES, 2020, 7 (15)