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Unusual pseudocapacitive lithium-ion storage on defective Co3O4 nanosheets

机译:在有缺陷的Co3O4纳米片上不寻常的赝电容锂离子存储

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摘要

Secondary lithium-ion batteries are restricted in large-scale applications including power grids and long driving electric vehicles owing to the low specific capacity of conventional intercalation anodes possessing sluggish Li-ion diffusion kinetics. Herein, we demonstrate an unusual pseudocapacitive lithium-ion storage on defective Co3O4 nanosheet anodes for high-performance rechargeable batteries. Cobalt-oxide nanosheets presented here composed of various defects including vacancies, dislocations and grain boundaries. Unique 2D holey microstructure enabled efficient charge transport as well as provided room for volume expansions associated with lithiation-delithiation process. These defective anodes exhibited outstanding pseudocapacitance (up to 87), reversible capacities (1490 mAh g(-1) @ 25 mA g(-1)), rate capability (592 mAh g(-1) @ 30 A g(-1)), stable cycling (85 after 500 cycles @ 1 A g(-1)) and columbic efficiency (similar to 100). Exceptional Li-ion storage phenomena in defective Co3O4 nanosheets is accredited to the pseudocapacitive nature of conversion reaction resulting from ultrafast Li-ion diffusion through various crystal defects. The demonstrated approach of defect-induced pseudocapacitance can also be protracted for various low-cost and/or eco-friendly transition metal-oxides for next-generation rechargeable batteries.
机译:二次锂离子电池在电网和长距离行驶的电动汽车等大规模应用中受到限制,因为传统的插层阳极比容量低,锂离子扩散动力学缓慢。在这里,我们展示了一种不寻常的赝电容锂离子存储在有缺陷的Co3O4纳米片阳极上,用于高性能可充电电池。这里介绍的氧化钴纳米片由各种缺陷组成,包括空位、位错和晶界。独特的 2D 孔微观结构可实现高效的电荷传输,并为与锂化-脱锂过程相关的体积膨胀提供空间。这些有缺陷的阳极具有出色的赝电容(高达87%)、可逆容量(1490 mAh g(-1) @ 25 mA g(-1))、倍率能力(592 mAh g(-1) @ 30 A g(-1))、稳定循环(500 次循环后 85% @ 1 A g(-1))和钴比效率(类似于 100%)。有缺陷的 Co3O4 纳米片中特殊的锂离子存储现象被认为是由超快锂离子通过各种晶体缺陷扩散导致的转化反应的赝电容性质。对于下一代可充电电池的各种低成本和/或环保过渡金属氧化物,所证明的缺陷感应赝电容方法也可以延长。

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