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首页> 外文期刊>Advanced energy materials >Enabling Stable Lithium Metal Anode via 3D Inorganic Skeleton with Superlithiophilic Interphase
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Enabling Stable Lithium Metal Anode via 3D Inorganic Skeleton with Superlithiophilic Interphase

机译:通过3D无机骨架与超亲石界面实现稳定的锂金属阳极

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The lithium metal battery (LMB) is among the most sought-after battery chemistries for high-energy storage devices. However, LMBs usually undergo uncontrollable lithium deposition and severe side reactions, which significantly impede their practical applications. Herein, a stable Al2O3-based inorganic framework with superlithiophilic lithium aluminum oxide (Li-Al-O) interphase is created via reacting Li with Al2O3 nanoparticles. The Al2O3-based inorganic framework can serve as a stable Li "host," reducing the volume expansion during cell cycling. Moreover, the strong interaction between Li-Al-O interphase and Li+ can redistribute Li+ and reduce the ion concentration gradient near surface protrusion, thus reducing uneven lithium electrodeposition. From galvanostatic measurements, symmetric cells with the 3D Al2O3-hybrid electrode can operate under an ultrahigh current density of 8 mA cm(-2) over 480 cycles. When used in full cells, it improves the capacity retention of Li/LiFePO4 from 78.4% to 93.6% after 200 cycles and enables long-term operation of Li/Li4Ti5O12 for over 1200 cycles.
机译:锂金属电池(LMB)是高能量存储设备中最抢手的电池化学物质之一。但是,LMB通常会发生不可控制的锂沉积和严重的副反应,这严重阻碍了它们的实际应用。在此,通过使Li与Al 2 O 3纳米颗粒反应,产生了具有超亲锂铝氧化物(Li-Al-O)相的稳定的基于Al 2 O 3的无机骨架。基于Al 2 O 3的无机骨架可以用作稳定的锂“主体”,减少细胞循环期间的体积膨胀。而且,Li-Al-O界面和Li +之间的强相互作用可以重新分布Li +并降低表面突起附近的离子浓度梯度,从而减少不均匀的锂电沉积。根据恒电流测量,具有3D Al2O3混合电极的对称电池可以在480个周期内以8 mA cm(-2)的超高电流密度工作。当在全电池中使用时,它将200次循环后Li / LiFePO4的容量保持率从78.4%提高到93.6%,并使Li / Li4Ti5O12可以长期运行1200次以上。

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