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首页> 外文期刊>Nano Energy >In situ LiFePO4 nano-particles grown on few-layer graphene flakes as high-power cathode nanohybrids for lithium-ion batteries
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In situ LiFePO4 nano-particles grown on few-layer graphene flakes as high-power cathode nanohybrids for lithium-ion batteries

机译:原位Lifepo4纳米颗粒在几层石墨烯片上生长,作为锂离子电池的高功率阴极纳米胺

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摘要

We have realized a Lithium Iron Phosphate (LFP)-graphene nanohybrid obtained by a direct LFP crystal colloidal synthesis on few-layer graphene (FLG) flakes produced by the liquid phase exfoliation (LPE) of pristine graphite. This hybrid material has been tested as a cathode in Li-ion batteries, achieving fast charge/discharge responses to high specific currents. We demonstrate a specific capacity exceeding 110 mAh g(-1) at 20 C, with no electrode damaging. Our LFP-FLG electrodes display a low charge transfer resistance, chemical stability and steady electrochemical behavior even under stressful conditions, such as impulsive charges at a high-rate (5 C) and long cycles at 1 C ( 700 cycles). The LFP colloidal synthesis combined with the FLG production by LPE allows for tuning both the LFP-platelets like and FLG flake morphologies in order to promote an optimal connection between the LFP and FLG flakes, ensuring fast charge transfers and consequently high-rate electrochemical performances. The method here proposed yields a scalable production path, which can be easily extended to silicate-, phosphate-and fluorophosphates-based cathode materials for the next generation of high-power lithium batteries.
机译:我们已经实现了通过直接LFP晶体胶体合成获得的磷酸铁锂(LFP)-Graphene纳米含量在由原始石墨的液相剥离(LPE)产生的几层石墨烯(FLG)薄片上获得。该混合材料已经在锂离子电池中作为阴极测试,实现了对高比电流的快速充电/放电响应。我们展示了超过20℃的110mAhg(-1)的特定容量,没有电极损坏。我们的LFP-FLG电极即使在压力条件下也显示出低电荷转移电阻,化学稳定性和稳定的电化学行为,例如以高速(5℃)和1c(& 700次循环)的脉冲电荷和长循环。通过LPE的LFP胶体合成与FLG产生结合允许调节LFP血小板和FLG片状形态,以促进LFP和FLG薄片之间的最佳连接,确保快速电荷转移并因此高速率的电化学性能。此处提出的方法产生可伸缩的生产路径,其可以容易地扩展到下一代高功率锂电池的硅酸盐,磷酸盐和氟磷酸盐的阴极材料。

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