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Cr2O3 nanosheet/carbon cloth anode with strong interaction and fast charge transfer for pseudocapacitive energy storage in lithium-ion batteries

机译:CR2O3纳米晶片/碳布阳极,具有强的相互作用和锂离子电池伪电容储能的快速电荷转移

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摘要

Flexible lithium-ion batteries have attracted considerable interest for next-generation bendable, implantable and wearable electronics devices. Here, we have successfully grown Cr2O3 nanosheets on carbon cloth (CC) as freestanding anodes for Li-ion batteries (LIBs). Density functional theory (DFT) calculations verify an optimal structure of two-dimensional Cr2O3 nanosheets on the carbon fiber surface and a strong interaction between the O edges of Cr2O3 and the carbon. The interconnected Cr2O3 nanosheets with a large surface area enable fast charge transfer by efficient contact with electrolyte while the flexible CC substrate accommodates the volume change during cycles, leading to excellent rate capability and cyclic stability through psuedocapacitance-dominant energy storage. Full cells are assembled using the Cr2O3-CC anode and a LiFePO4 cathode, which deliver excellent capacity retention and rate capability. The fully-charged cell is demonstrated to power a red light-emitting diode (LED), verifying the potential of Cr2O3-CC as a promising anode material for LIBs.
机译:灵活的锂离子电池吸引了对下一代可弯曲,可植绒和可穿戴电子设备的相当兴趣。在这里,我们在碳布(CC)上成功地将CR2O3纳米片(CC)作为锂离子电池(Libs)的独立阳极。密度泛函理论(DFT)计算验证了在碳纤维表面上的二维CR2O3纳米片的最佳结构,以及Cr2O3和碳的O边缘之间的强相互作用。具有大表面积的互连CR2O3纳米片通过有效接触电解质,而柔性CC衬底在循环期间容纳体积变化,导致通过PSUEdocapacituce的优势储能,通过Psiedocapacituce储存的速度能力和循环稳定性来实现快速电荷转移。使用CR2O3-CC阳极和LiFePO4阴极组装完整的细胞,这提供了优异的容量保持和速率能力。证明完全充电的电池为红色发光二极管(LED)供电,验证CR2O3-CC的电位作为Libs的有希望的阳极材料。

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    《RSC Advances》 |2019年第57期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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