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On-chip high power porous silicon lithium ion batteries with stable capacity over 10 000 cycles

机译:片上高功率多孔硅离子电池,其容量稳定超过10 000循环

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We demonstrate the operation of a graphene-passivated on-chip porous silicon material as a high rate lithium battery anode with over 50X power density, and 100X energy density improvement compared to identically prepared on-chip supercapacitors. We demonstrate this Faradaic storage behavior to occur at fast charging rates (1-10 mA cm(-2)) where lithium locally intercalates into the nanoporous silicon, preventing the degradation and poor cycling performance attributed to deep storage in the bulk silicon. This device exhibits cycling performance that exceeds 10 000 cycles with capacity above 0.1 mA h cm(-2) without notable capacity fade. This demonstrates a practical route toward high power, high energy, and long lifetime all-silicon on-chip storage systems relevant toward integration into electronics, photovoltaics, and other silicon-based platforms.
机译:我们证明了与芯片上超级电容器相同制备的相同制备的芯片,我们证明了芯片上多孔硅材料的运行,其作为高速锂电池阳极的高速锂电池阳极和100倍的能量密度的改善。 我们证明了这种法拉第的存储行为以快速充电速率(1-10 mA cm(-2))发生,其中锂在局部插入纳米孔硅,以防止降解且循环性能差,归因于散装硅中的深层存储。 该设备表现出超过10 000循环的循环性能,其容量高于0.1 mA H CM(-2),而不会显着褪色。 这表明了朝着高功率,高能量和长寿命全硅芯片存储系统相关的实用途径,与将电子,光伏和其他基于硅的平台相关。

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