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Atomic/Molecular Layer Deposition of Lithium Terephthalate Thin Films as High Rate Capability Li-Ion Battery Anodes

机译:对苯二甲酸锂薄膜的原子/分子层沉积作为高倍率能力的锂离子电池阳极

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摘要

We demonstrate the fabrication of high-quality electrochemically active organic lithium electrode thin films by the currently strongly emerging combined atomic/molecular layer deposition (ALD/MLD) technique using lithium terephthalate, a recently found anode material for lithium-ion battery (LIB), as a proof-of-the-concept material. Our deposition process for Li-terephthalate is shown to well comply with the basic principles of ALD-type growth including the sequential self-saturated surface reactions, a necessity when aiming at micro-LIB devices with three-dimensional architectures. The as-deposited films are found crystalline across the deposition temperature range of 200-280 degrees C, which is a trait highly desired for an electrode material but rather unusual for hybrid inorganic-organic thin films. Excellent rate capability is ascertained for the Li-terephthalate films with no conductive additives required. The electrode performance can be further enhanced by depositing a thin protective LiPON solid-state electrolyte layer on top of Li-terephthalate; this yields highly stable structures with capacity retention of over 97% after 200 charge/discharge cycles at 3.2 C.
机译:我们演示了使用对苯二甲酸锂(一种最近发现的锂离子电池(LIB)负极材料),通过目前正在大力兴起的原子/分子层组合沉积(ALD / MLD)技术,制造出高质量的电化学活性有机锂电极薄膜,作为概念验证材料。我们的对苯二甲酸锂的沉积工艺显示出很好地符合ALD型生长的基本原理,包括连续的自饱和表面反应,这是针对具有三维结构的微型LIB器件的必要条件。发现所沉积的膜在200-280℃的沉积温度范围内是结晶的,这是电极材料高度期望的特性,但对于无机-有机混合薄膜而言却很不寻常。对于不需要导电添加剂的对苯二甲酸锂膜,确定了优异的倍率性能。通过在对苯二甲酸锂的顶部沉积一层薄的保护性LiPON固态电解质层,可以进一步提高电极性能。这产生了高度稳定的结构,在3.2 C下经过200次充电/放电循环后,容量保持率超过97%。

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