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首页> 外文期刊>RSC Advances >One-step fabrication of nanosized LiFePO4/expanded graphite composites with a particle growth inhibitor and enhanced electrochemical performance of aqueous Li-ion capacitors
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One-step fabrication of nanosized LiFePO4/expanded graphite composites with a particle growth inhibitor and enhanced electrochemical performance of aqueous Li-ion capacitors

机译:一步法制备具有颗粒生长抑制剂的纳米LiFePO4 /膨胀石墨复合材料和增强的水性锂离子电容器的电化学性能

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摘要

It is reported that olivine-type lithium iron phosphate (LFP) for Li-ion batteries is one of the most widely utilized cathode materials, but its high-power applications are limited due to its intrinsically poor ion transfer rate and conductivity. Therefore, it is highly desired to fabricate LFP Li-ion capacitors (LICs) with high power performance and excellent cyclic reversibility, especially in safe, low cost and environmentally friendly aqueous electrolytes. Here, we fabricate LFP/expanded graphite (EG) nanocomposites by a one-step process, in which polyethylene glycol (PEG) is used as the particle growth inhibitor combined with vacuum infiltration of the LFP precursor into EG as a conductive sub-phase, and further investigate their high-power performance in aqueous LICs. Embedding spherical LFP nanoparticles with well-controlled size and agglomeration into the pores of EG and wrapping LFP nanoparticles by EG films contribute to the rapid electron and ion diffusion in LFP/EG composites, resulting in excellent cyclic reversibility and rate performance of LFP/EG composites. The aqueous LFP/EG//active carbon (AC) LICs were assembled in LiNO _(3) electrolytes with LFP/EG composites and AC as the positive and negative electrodes, respectively. The optimal LIC shows a power density of 2367.9 W kg ~(?1) at an energy density of 6.5 W h kg ~(?1) , dramatically favorable rate characteristics and excellent cycle life with 82.1% capacitance retention of its primary capacitance at 2 A g ~(?1) after 6000 cycles, markedly higher than those of the commercial LFP LIC. The presented aqueous LFP/EG//AC LICs with excellent electrochemical performance are expected to have broad high-power appliances that are cost-sensitive and highly secure.
机译:据报道,用于锂离子电池的橄榄石型磷酸铁锂(LFP)是使用最广泛的正极材料之一,但由于其固有的较差的离子传输速率和导电性,其高功率应用受到限制。因此,非常需要制造具有高功率性能和优异的循环可逆性的LFP锂离子电容器(LIC),尤其是在安全,低成本和环境友好的水性电解质中。在这里,我们通过一步法制造LFP /膨胀石墨(EG)纳米复合材料,其中将聚乙二醇(PEG)用作颗粒生长抑制剂,并将LFP前体真空渗入EG作为导电子相,并进一步研究其在含水LIC中的高功率性能。将大小可控且团聚度良好的球形LFP纳米颗粒嵌入EG孔中,并用EG膜包裹LFP纳米颗粒有助于LFP / EG复合材料中电子和离子的快速扩散,从而导致LFP / EG复合材料具有出色的循环可逆性和速率性能。水性LFP / EG //活性炭(AC)LICs在LiNO_(3)电解质中组装,分别使用LFP / EG复合材料和AC作为正极和负极。最佳LIC在6.5 W h kg〜(?1)的能量密度下显示出2367.9 W kg〜(?1)的功率密度,极佳的速率特性和出色的循环寿命,其主电容在2时的电容保持率为82.1%。 6000次循环后的g〜(?1),明显高于商用LFP LIC的g〜(?1)。预期具有优异的电化学性能的所提出的水性LFP / EG // AC LIC将具有成本敏感且高度安全的广泛的大功率设备。

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