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Multifunctional Utilization of Pitch-Coated Carbon Fibers in Lithium-Based Rechargeable Batteries

机译:锂基可充电电池中螺旋涂层碳纤维的多功能利用

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摘要

This work reports carbon fibers as an electrode material and current collector for dual-carbon and lithium-ion batteries. Fully graphitic and semigraphitic carbon fibers undergo anion intercalation beyond 4.5 V versus Li/Li+. Symmetric dual-carbon full cells using a pitch-coated fully graphitic carbon fiber mat as both cathode and anode delivers an energy-density of 276 and 322 Wh kg(-1) at 342 W kg(-1) power density in the voltage range of 3.0-5.0 and 3.0-5.2 V, respectively. On the other hand, nongraphitic carbon fibers do not exhibit anion intercalation up to 5.2 V and can be used as a current collector. They also possess a larger number of Li+ storage sites in their randomly oriented microstructure when used as an anode. A lithium-ion full cell with double carbon-coated C-LiFePO4 loaded on nongraphitic carbon fiber as a cathode and pitch-coated nongraphitic carbon fiber as an anode exhibits 202.6 and 75.2 Wh kg(-1) energy density at power densities of 46.75 W kg(-1) and 11.7 kW kg(-1), respectively in 2.0-3.5 V range. This pitch-coated carbon fiber-based battery configuration eliminates the need for metal foils and costly fluorinated binders, lowers overall weight of the cell, and is capable of sustaining mechanical stress and thermal shock.
机译:这项工作报告的碳纤维作为电极材料和集电体双 - 碳和锂离子电池。充分石墨和semigraphitic碳纤维经历阴离子嵌入超出4.5 V对于Li / Li +。使用沥青覆盖石墨充分碳纤维毡作为阴极和阳极对称双碳全电池提供的能量密度276和322瓦时千克(-1)在342公斤w ^(-1)中的功率的电压范围密度的分别3.0-5.0和3.0-5.2伏。在另一方面,非石墨型碳纤维不表现出阴离子嵌入最多5.2 V和可被用作集流体。他们还拥有在他们随机定向微结构的锂离子储存地点的数量较多用作阳极时。双碳涂布C-的LiFePO 4的锂离子全电池装载在非石墨型碳纤维为阴极,沥青覆盖非石墨型碳纤维作为负极的展品202.6和75.2瓦公斤(-1)能量在46.75 W的功率密度密度公斤(-1)和11.7千瓦公斤(-1),分别在2.0-3.5 V范围内。此沥青覆盖纤维基碳电池配置消除了金属箔和昂贵的氟化粘合剂的需要,降低了电池的整体重量,并且能够维持机械应力和热冲击的。

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