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Li-ion batteries from LiFePO4 cathode and anatase/graphene composite anode for stationary energy storage

机译:LiFePO4正极和锐钛矿/石墨烯复合负极的锂离子电池,用于固定式储能

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摘要

Li-ion batteries made from LiFePO4 cathode and anatase TiO2/graphene composite anode were investigated for potential application in stationary energy storage. Fine-structured LiFePO4 was synthesized by a novel molten surfactant approach whereas anatase TiO2/graphene nanocomposite was prepared via self-assembly method. The full cell that operated at 1.6 V demonstrated negligible fade even after more than 700 cycles at measured 1 C rate. While with relative lower energy density than traditional Li-ion chemistries interested for vehicle applications, the Li-ion batteries based on LiFePO4/TiO2 combination potentially offers long life and low cost, along with safety, all which are critical to the stationary applications.
机译:研究了由LiFePO4阴极和锐钛矿型TiO2 /石墨烯复合阳极制成的锂离子电池在固定能量存储中的潜在应用。采用新型的熔融表面活性剂方法合成了结构精细的LiFePO4,采用自组装法制备了锐钛矿型TiO2 /石墨烯纳米复合材料。即使在以1 C速率测量的超过700个循环之后,在1.6 V下工作的整个电池仍表现出可忽略的衰落。尽管能量密度比对车辆应用感兴趣的传统锂离子化学物质低,但基于LiFePO4 / TiO2组合的锂离子电池潜在地提供了长寿命和低成本以及安全性,这对于固定应用而言至关重要。

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