A mini-review of advanced separator engineering in lithium metal batteries

被引:24
作者
Wu, Huiping [1 ]
Chen, Libao [1 ]
Chen, Yuejiao [1 ]
机构
[1] Cent South Univ, State Key Lab Powder Met, Changsha 410083, Hunan, Peoples R China
基金
中国国家自然科学基金;
关键词
LI METAL; LIQUID ELECTROLYTES; SULFUR BATTERIES; ANODE; DENDRITE; GROWTH; ION; PERFORMANCE; DEPOSITION; CARBON;
D O I
10.1039/d1se01152a
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
The lithium metal anode has been treated as the most promising alternative in next-generation lithium-based batteries due to its ultra-high theoretical capacity, low potential and light weight. However, significant challenges such as dendrite growth and poor lifetime have severely hindered the commercialization process of lithium metal anodes. The separator not only functions as the first signal of lithium dendrite formation, but also the last barrier to prevent the battery from short-circuit, playing an irreplaceable role in lithium metal batteries. Traditional polyolefin separators have shortcomings such as poor thermal stability and poor wettability. Therefore, separator engineering is of great significance for suppressing lithium dendrite growth. In this review, we classified the recent progress of separator engineering in lithium metal batteries into four parts: (1) optimizing the performance of polyolefin membranes; (2) controlling the dendrite growth direction; (3) developing a novel separator material; (4) introducing a functional multilayer membrane. To obtain direct evidence of dendrite suppression by separator engineering, new technical means for certifying lithium deposition behaviors have also been reviewed. Finally, our conclusion and perspectives on the future research and development of lithium metal batteries are also briefly outlined.
引用
收藏
页码:5656 / 5671
页数:16
相关论文
共 97 条
[41]   Pathways for practical high-energy long-cycling lithium metal batteries [J].
Liu, Jun ;
Bao, Zhenan ;
Cui, Yi ;
Dufek, Eric J. ;
Goodenough, John B. ;
Khalifah, Peter ;
Li, Qiuyan ;
Liaw, Bor Yann ;
Liu, Ping ;
Manthiram, Arumugam ;
Meng, Y. Shirley ;
Subramanian, Venkat R. ;
Toney, Michael F. ;
Viswanathan, Vilayanur V. ;
Whittingham, M. Stanley ;
Xiao, Jie ;
Xu, Wu ;
Yang, Jihui ;
Yang, Xiao-Qing ;
Zhang, Ji-Guang .
NATURE ENERGY, 2019, 4 (03) :180-186
[42]   Electrospun core-shell microfiber separator with thermal-triggered flame-retardant properties for lithium-ion batteries [J].
Liu, Kai ;
Liu, Wei ;
Qiu, Yongcai ;
Kong, Biao ;
Sun, Yongming ;
Chen, Zheng ;
Zhuo, Denys ;
Lin, Dingchang ;
Cui, Yi .
SCIENCE ADVANCES, 2017, 3 (01)
[43]   Extending the Life of Lithium-Based Rechargeable Batteries by Reaction of Lithium Dendrites with a Novel Silica Nanoparticle Sandwiched Separator [J].
Liu, Kai ;
Zhuo, Denys ;
Lee, Hyun-Wook ;
Liu, Wei ;
Lin, Dingchang ;
Lu, Yingying ;
Cui, Yi .
ADVANCED MATERIALS, 2017, 29 (04)
[44]   Functional metal-organic framework boosting lithium metal anode performance via chemical interactions [J].
Liu, Wen ;
Mi, Yingying ;
Weng, Zhe ;
Zhong, Yiren ;
Wu, Zishan ;
Wang, Hailiang .
CHEMICAL SCIENCE, 2017, 8 (06) :4285-4291
[45]   Making Li-metal electrodes rechargeable by controlling the dendrite growth direction [J].
Liu, Yadong ;
Liu, Qi ;
Xin, Le ;
Liu, Yuzi ;
Yang, Fan ;
Stach, Eric A. ;
Xie, Jian .
NATURE ENERGY, 2017, 2 (07)
[46]   Dendrite-free lithium metal anode enabled by separator engineering via uniform loading of lithiophilic nucleation sites [J].
Liu, Yangyang ;
Xiong, Shizhao ;
Wang, Jialin ;
Jiao, Xingxing ;
Li, Sha ;
Zhang, Chaofan ;
Song, Zhongxiao ;
Song, Jiangxuan .
ENERGY STORAGE MATERIALS, 2019, 19 :24-30
[47]   Dendrite-Free, High-Rate, Long-Life Lithium Metal Batteries with a 3D Cross-Linked Network Polymer Electrolyte [J].
Lu, Qingwen ;
He, Yan-Bing ;
Yu, Qipeng ;
Li, Baohua ;
Kaneti, Yusuf Valentino ;
Yao, Youwei ;
Kang, Feiyu ;
Yang, Quan-Hong .
ADVANCED MATERIALS, 2017, 29 (13)
[48]   A Thermally Conductive Separator for Stable Li Metal Anodes [J].
Luo, Wei ;
Zhou, Lihui ;
Fu, Kun ;
Yang, Zhi ;
Wan, Jiayu ;
Manno, Michael ;
Yao, Yonggang ;
Zhu, Hongli ;
Yang, Bao ;
Hu, Liangbing .
NANO LETTERS, 2015, 15 (09) :6149-6154
[49]   Dendrite growth in lithium/polymer systems - A propagation model for liquid electrolytes under galvanostatic conditions [J].
Monroe, C ;
Newman, J .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2003, 150 (10) :A1377-A1384
[50]   In situ Scanning Electron Microscopy (SEM) observation of interfaces within plastic lithium batteries [J].
Orsini, F ;
Du Pasquier, A ;
Beaudoin, B ;
Tarascon, JM ;
Trentin, M ;
Langenhuizen, N ;
De Beer, E ;
Notten, P .
JOURNAL OF POWER SOURCES, 1998, 76 (01) :19-29