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Intensification of Pseudocapacitance by Nanopore Engineering on Waste-Bamboo-Derived Carbon as a Positive Electrode for Lithium-Ion Batteries

机译:通过纳米孔工程对废竹衍生碳作为锂离子电池的正极增强伪电容。

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摘要

Nanoporous carbon, including redox-active functional groups, can be a promising active electrode material (AEM) as a positive electrode for lithium-ion batteries owing to its high electrochemical performance originating from the host-free surface-driven charge storage process. This study examined the effects of the nanopore size on the pseudocapacitance of the nanoporous carbon materials using nanopore-engineered carbon-based AEMs (NE-C-AEMs). The pseudocapacitance of NE-C-AEMs was intensified, when the pore diameter was ≥2 nm in a voltage range of 1.0~4.8 V vs Li+/Li under the conventional carbonate-based electrolyte system, showing a high specific capacity of ~485 mA·h·g−1. In addition, the NE-C-AEMs exhibited high rate capabilities at current ranges from 0.2 to 4.0 A·g−1 as well as stable cycling behavior for more than 300 cycles. The high electrochemical performance of NE-C-AEMs was demonstrated by full-cell tests with a graphite nanosheet anode, where a high specific energy and power of ~345 Wh·kg−1 and ~6100 W·Kg−1, respectively, were achieved.
机译:包括氧化还原活性官能团在内的纳米孔碳由于其源自无主体表面驱动电荷存储过程的高电化学性能,可以作为锂离子电池的正电极,成为一种有前途的活性电极材料(AEM)。这项研究使用纳米孔工程碳基AEM(NE-C-AEM)检验了纳米孔尺寸对纳米孔碳材料假电容的影响。在传统碳酸酯类电解质体系下,在1.0〜4.8 V vs. Li + / Li的电压范围内,孔径≥2nm时,NE-C-AEMs的假电容增强,表明〜485 mA·h·g -1 的高比容量。另外,NE-C-AEMs在电流范围为0.2至4.0 A·g -1 时显示出高速率能力,并且在300多个循环中具有稳定的循环性能。 NE-C-AEMs的高电化学性能通过石墨纳米片阳极的全电池测试得到证明,其中高比能和功率分别为〜345 Wh·kg -1 和〜6100 W·分别达到Kg -1

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