Design Strategies for Anodes and Interfaces Toward Practical Solid-State Li-Metal Batteries

被引:11
作者
Yoon, Gabin [1 ]
Kim, Sewon [1 ]
Kim, Ju-Sik [1 ]
机构
[1] Samsung Adv Inst Technol, Battery Mat TU, 130 Samsung Ro, Suwon 443803, Gyeonggi Do, South Korea
关键词
anode interlayers; Garnet solid electrolytes; Li-metal batteries; Li metal; solid electrolyte interface; IN-SITU; CONVERSION REACTION; CURRENT COLLECTORS; HIGH-ENERGY; LITHIUM; ELECTROLYTE; TEMPERATURE; RESISTANCE; LI7LA3ZR2O12; MECHANISM;
D O I
10.1002/advs.202302263
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Solid-state Li-metal batteries (based on solid-state electrolytes) offer excellent safety and exhibit high potential to overcome the energy-density limitations of current Li-ion batteries, making them suitable candidates for the rapidly developing fields of electric vehicles and energy-storage systems. However, establishing close solid-solid contact is challenging, and Li-dendrite formation in solid-state electrolytes at high current densities causes fatal technical problems (due to high interfacial resistance and short-circuit failure). The Li metal/solid electrolyte interfacial properties significantly influence the kinetics of Li-metal batteries and short-circuit formation. This review discusses various strategies for introducing anode interlayers, from the perspective of reducing the interfacial resistance and preventing short-circuit formation. In addition, 3D anode structural-design strategies are discussed to alleviate the stress caused by volume changes during charging and discharging. This review highlights the importance of comprehensive anode/electrolyte interface control and anode design strategies that reduce the interfacial resistance, hinder short-circuit formation, and facilitate stress relief for developing Li-metal batteries with commercial-level performance.
引用
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页数:24
相关论文
共 123 条
[1]   Interface-Compatible and High-Cyclability Lithiophilic Lithium-Zinc Alloy Anodes for Garnet-Structured Solid Electrolytes [J].
Alexander, George, V ;
Sreejith, O., V ;
Indu, M. S. ;
Murugan, Ramaswamy .
ACS APPLIED ENERGY MATERIALS, 2020, 3 (09) :9010-9017
[2]   Electrodes-electrolyte interfacial engineering for realizing room temperature lithium metal battery based on garnet structured solid fast Li+ conductors [J].
Alexander, George Vadakkethalakel ;
Patra, Srabani ;
Valiyaveetil, Sona ;
Raj, Sobhan ;
Sugumar, Manoj Krishna ;
Din, Mir Mehraj Ud ;
Murugan, Ramaswamy .
JOURNAL OF POWER SOURCES, 2018, 396 :764-773
[3]   Mitigating Interfacial Mismatch between Lithium Metal and Garnet-Type Solid Electrolyte by Depositing Metal Nitride Lithiophilic Interlayer [J].
Baniya, Abiral ;
Gurung, Ashim ;
Pokharel, Jyotshna ;
Chen, Ke ;
Pathak, Rajesh ;
Lamsal, Buddhi Sagar ;
Ghimire, Nabin ;
Bobba, Raja Sekhar ;
Rahman, Sheikh Ifatur ;
Mabrouk, Sally ;
Smirnova, Alevtina L. ;
Xu, Kang ;
Qiao, Quinn .
ACS APPLIED ENERGY MATERIALS, 2022, 5 (01) :648-657
[4]   12 μm-Thick Sintered Garnet Ceramic Skeleton Enabling High-Energy-Density Solid-State Lithium Metal Batteries [J].
Bao, Chengshuai ;
Zheng, Chujun ;
Wu, Meifen ;
Zhang, Yan ;
Jin, Jun ;
Chen, Huan ;
Wen, Zhaoyin .
ADVANCED ENERGY MATERIALS, 2023, 13 (13)
[5]   Molten Salt Driven Conversion Reaction Enabling Lithiophilic and Air-Stable Garnet Surface for Solid-State Lithium Batteries [J].
Bi, Zhijie ;
Sun, Qifu ;
Jia, Mengyang ;
Zuo, Mingxue ;
Zhao, Ning ;
Guo, Xiangxin .
ADVANCED FUNCTIONAL MATERIALS, 2022, 32 (52)
[6]   In-situ constructed lithium-salt lithiophilic layer inducing bi-functional interphase for stable LLZO/Li interface [J].
Cai, Mingli ;
Jin, Jun ;
Xiu, Tongping ;
Song, Zhen ;
Badding, Michael E. ;
Wen, Zhaoyin .
ENERGY STORAGE MATERIALS, 2022, 47 :61-69
[7]   Robust Conversion-Type Li/Garnet interphases from metal salt solutions [J].
Cai, Mingli ;
Lu, Yang ;
Yao, Liu ;
Jin, Jun ;
Wen, Zhaoyin .
CHEMICAL ENGINEERING JOURNAL, 2021, 417
[8]   In Situ Lithiophilic Layer from H+/Li+ Exchange on Garnet Surface for the Stable Lithium-Solid Electrolyte Interface [J].
Cai, Mingli ;
Lu, Yang ;
Su, Jianmeng ;
Ruan, Yadong ;
Chen, Chunhua ;
Chowdari, Bobba V. R. ;
Wen, Zhaoyin .
ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (38) :35030-35038
[9]   Lithium Deposition-Induced Fracture of Carbon Nanotubes and Its Implication to Solid-State Batteries [J].
Chen, Jingzhao ;
Zhao, Chao ;
Xue, Dingchuan ;
Zhang, Liqiang ;
Yang, Tingting ;
Du, Congcong ;
Zhang, Xuedong ;
Fang, Ruyue ;
Guo, Baiyu ;
Ye, Hongjun ;
Li, Hui ;
Dai, Qiushi ;
Zhao, Jun ;
Li, Yanshuai ;
Harris, Stephen J. ;
Tang, Yongfu ;
Ding, Feng ;
Zhang, Sulin ;
Huang, Jianyu .
NANO LETTERS, 2021, 21 (16) :6859-6866
[10]   Approaching Practically Accessible Solid-State Batteries: Stability Issues Related to Solid Electrolytes and Interfaces [J].
Chen, Rusong ;
Li, Qinghao ;
Yu, Xiqian ;
Chen, Liquan ;
Li, Hong .
CHEMICAL REVIEWS, 2020, 120 (14) :6820-6877