Advanced TiO(2)/Al(2)O(3) Bilayer ALD Coatings for Improved Lithium-Rich Layered Oxide Electrodes

用于改进富锂层状氧化物电极的先进TiO(2)/Al(2)O(3)双层ALD涂层

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Abstract

Surface modification is a highly effective strategy for addressing issues in lithium-rich layered oxide (LLO) cathodes, including phase transformation, particle cracking, oxygen gas release, and transition-metal ion dissolution. Existing single-/double-layer coating strategies face drawbacks such as poor component contact and complexity. Herein, we present the results of a low-temperature atomic layer deposition (ALD) process for creating a TiO(2)/Al(2)O(3) bilayer on composite cathodes made of AS200 (Li(1.08)Ni(0.34)Co(0.08)Mn(0.5)O(2)). Electrochemical analysis demonstrates that TiO(2)/Al(2)O(3)-coated LLO electrodes exhibit improved discharge capacities and enhanced capacity retention compared with uncoated samples. The TAA-5/AS200 bilayer-coated electrode, in particular, demonstrates exceptional capacity retention (∼90.4%) and a specific discharge capacity of 146 mAh g(-1) after 100 cycles at 1C within the voltage range of 2.2 to 4.6 V. The coated electrodes also show reduced voltage decay, lower surface film resistance, and improved interfacial charge transfer resistances, contributing to enhanced stability. The ALD-deposited TiO(2)/Al(2)O(3) bilayer coatings exhibit promising potential for advancing the electrochemical performance of lithium-rich layered oxide cathodes in lithium-ion batteries.

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