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Atomic layer deposition of ZnO/TiO2 nanolaminates as ultra-long life anode material for lithium-ion batteries

机译:ZnO / TiO2纳米层压板的原子层沉积作为锂离子电池的超长寿命阳极材料

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摘要

In this work, we designed ZnO/TiO2 nanolaminates by atomic layer deposition (ALD) as anode material for lithium ion batteries. ZnO/TiO2 nanolaminates were fabricated on copper foil by depositing unit of 26 cycles ZnO/26 cycles TiO2 repeatedly using ALD. ZnO/TiO2 nanolaminates are much more stable than pristine ZnO films during electrochemical cycling process. Therefore, ZnO/TiO2 nanolaminates exhibit excellent lithium storage performance with an improved cycling performance and superior rate capability compared to pristine ZnO films. Moreover, coulombic efficiency (CE) of ZnO/TiO2 nanolaminates is above 99%, which is much higher than the value of pristine ZnO films. Excellent ultralong-life performance is gained for ZnO/TiO2 nanolaminates, retaining a reversible capacity of ~667 mAh g−1 within cut-off voltage of 0.05-2.5 V after 1200 cycles of charge-discharge at 500 mA g−1. Constructing nanolaminates structures via ALD might open up new opportunities for improving the performance of anode materials with large volume expansion in lithium ion batteries.
机译:在这项工作中,我们通过原子层沉积(ALD)设计了ZnO / TiO2纳米层压板作为锂离子电池的负极材料。通过使用ALD重复沉积26个循环ZnO / 26个循环TiO2的单元,在铜箔上制备ZnO / TiO2纳米层压板。在电化学循环过程中,ZnO / TiO2纳米层压板比原始ZnO膜稳定得多。因此,与原始ZnO薄膜相比,ZnO / TiO2纳米层压板具有出色的锂存储性能,具有改善的循环性能和优异的倍率性能。此外,ZnO / TiO2纳米层压板的库仑效率(CE)高于99%,远高于原始ZnO薄膜的值。 ZnO / TiO2纳米层压板具有出色的超长寿命性能,在500次充放电1200次循环后,在0.05-2.5 V的截止电压范围内可保持约667 mAh g −1 的可逆容量。 mA g -1 。通过ALD构造纳米层状结构可能为改善锂离子电池大体积膨胀阳极材料的性能开辟新机会。

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