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Review

Research Progress of Anode-Free Lithium Metal Batteries

1
School of Materials and Environmental Engineering, Shenzhen Polytechnic, Shenzhen 518055, China
2
College of Intelligent Metallurgy, Guangxi Modern Polytechnic College, Hechi 547000, China
3
School of Applied Biology, Shenzhen Institute of Technology, Shenzhen 518116, China
4
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Crystals 2022, 12(9), 1241; https://doi.org/10.3390/cryst12091241
Submission received: 4 August 2022 / Revised: 24 August 2022 / Accepted: 26 August 2022 / Published: 2 September 2022

Abstract

Lithium-metal batteries (LMBs) are regarded as the most promising candidate for practical applications in portable electronic devices and electric vehicles because of their high capacity and energy density. However, the uncontrollable growth of lithium dendrite reduces its cycling ability and even causes a severe safety concern, which impedes the development of the technology. Although great efforts have been devoted to solving the lithium dendrite issue in recent years, the contradiction between the high cost of thin Li foil and the severe safety hazard of excess Li still exists. This is precisely the factor that inspired the development of anode-free lithium-metal batteries (AFLMBs). Compared to lithium-metal batteries, AFLMBs with a zero-excess Li anode possess an incredible, conceivable, and specific energy. Additionally, because the use of metal lithium is limited, the battery manufacturing will be safer and simpler, leading to a significant decrease in cost. However, comprehensive reviews on anode-free batteries are rare. Therefore, in this review, we aim to explain the essential development factors influencing the cycle life, energy density, cost, and working mechanism of anode-free batteries. We summarize different strategies to improve the cycling stability of AFLMBs, and we discuss the application of anode-free electrodes in other electrochemical energy storage systems. Moreover, it is believed that the combination of modification techniques, including electrolytes and current collectors, and the application protocols will be the most important solution for future anode-free batteries.
Keywords: anode-free; lithium-ion batteries; lithium-metal batteries; lithium dendrite anode-free; lithium-ion batteries; lithium-metal batteries; lithium dendrite

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MDPI and ACS Style

Zhang, J.; Khan, A.; Liu, X.; Lei, Y.; Du, S.; Lv, L.; Zhao, H.; Luo, D. Research Progress of Anode-Free Lithium Metal Batteries. Crystals 2022, 12, 1241. https://doi.org/10.3390/cryst12091241

AMA Style

Zhang J, Khan A, Liu X, Lei Y, Du S, Lv L, Zhao H, Luo D. Research Progress of Anode-Free Lithium Metal Batteries. Crystals. 2022; 12(9):1241. https://doi.org/10.3390/cryst12091241

Chicago/Turabian Style

Zhang, Jian, Abrar Khan, Xiaoyuan Liu, Yuban Lei, Shurong Du, Le Lv, Hailei Zhao, and Dawei Luo. 2022. "Research Progress of Anode-Free Lithium Metal Batteries" Crystals 12, no. 9: 1241. https://doi.org/10.3390/cryst12091241

APA Style

Zhang, J., Khan, A., Liu, X., Lei, Y., Du, S., Lv, L., Zhao, H., & Luo, D. (2022). Research Progress of Anode-Free Lithium Metal Batteries. Crystals, 12(9), 1241. https://doi.org/10.3390/cryst12091241

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