Emerging Atomic Layer Deposition for the Development of High-Performance Lithium-Ion Batteries

Перспективное применение атомно-слоевого осаждения для разработки высокоэффективных литий-ионных аккумуляторов
Sina Karimzadeh, Babak Safaei, Chris Yuan, Tien‐Chien Jen
2023-07-12

atomic layer depositionelectrochemical performanceelectrode interface coatingslithium-ion batteriessolid-state electrolytes
Abstract With the increasing demand for low-cost and environmentally friendly energy, the application of rechargeable lithium-ion batteries (LIBs) as reliable energy storage devices in electric cars, portable electronic devices and space satellites is on the rise. Therefore, extensive and continuous research on new materials and fabrication methods is required to achieve the desired enhancement in their electrochemical performance. Battery active components, including the cathode, anode, electrolyte, and separator, play an important role in LIB functionality. The major problem of LIBs is the degradation of the electrolyte and electrode materials and their components during the charge‒discharge process. Atomic layer deposition (ALD) is considered a promising coating technology to deposit uniform, ultrathin films at the atomic level with controllable thickness and composition. Various metal films can be deposited on the surface of active electrodes and solid electrolyte materials to tailor and generate a protective layer at the electrode interface. In addition, synthesis of microbatteries and novel nanocomplexes of the cathode, anode, and solid-state electrolyte to enhance the battery performance can all be attained by ALD. Therefore, the ALD technique has great potential to revolutionize the future of the battery industry. This review article provides a comprehensive foundation of the current state of ALD in synthesizing and developing LIB active components. Additionally, new trends and future expectations for the further development of next-generation LIBs via ALD are reported. Graphical Abstract
1
ALD can coat electrodes and solid electrolytes with metal films that tailor electrode interfaces and mitigate degradation during battery cycling.
2
ALD offers a promising route to improve lithium-ion battery electrochemical performance and develop next-generation battery architectures.
3
Atomic layer deposition (ALD) enables uniform, ultrathin protective films with atomic-scale control over thickness and composition.
4
The review summarizes current ALD applications for lithium-ion battery components and identifies emerging trends and future development prospects.
5
The technique supports fabrication of microbatteries and nanocomplexes integrating cathodes, anodes, and solid-state electrolytes.

Lithium-ion battery active components (cathodes, anodes, electrolytes, and separators) developed or modified using atomic layer deposition

The use of atomic layer deposition to synthesize, coat, and develop lithium-ion battery components for enhanced electrochemical performance and reduced charge–discharge degradation

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2023-07-12
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Authors
Sina Karimzadeh
Babak Safaei
Chris Yuan
Tien‐Chien Jen
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