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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:纳米型LiFePO4 /膨胀石墨复合材料的一步制造具有颗粒生长抑制剂和锂离子电容器水溶液的电化学性能

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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 LiNO3 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,锂离子电池的橄榄石型锂磷酸铁(LFP)是最广泛利用的阴极材料之一,但由于其内在的离子传递速率和导电性,其高功率应用受到限制。因此,强烈希望具有高功率性能的LFP锂离子电容器(LICS)和优异的循环可逆性,尤其是安全,低成本和环保的水性电解质。这里,我们通过一种步骤方法制造LFP /膨胀石墨(例如)纳米复合材料,其中使用聚乙二醇(PEG)作为颗粒生长抑制剂与LFP前体的真空浸润相结合,例如作为导电子阶段,并进一步研究了它们在水利中的高功率性能。将具有良好控制的球形LFP纳米颗粒嵌入例如通过例如膜在例如膜中孔的孔中的孔中的孔中的孔中有助于在LFP /例如复合材料中的快速电子和离子扩散,导致LFP /例如复合材料的优异环状可逆性和速率性能。将LFP / EG //活性炭(AC)LICs在用LFP /例如复合材料和AC作为正极和负电极的LinO3电解质中组装在LinO3电解质中。最佳LIC显示电力密度为2367.9 W千克(-1)的能量密度为6.5WH kg(-1),显着有利的速率特性和优异的循环寿命,其初级电容在2 A G处具有82.1%的电容保持率(-1)6000个周期后,明显高于商业LFP LIC。呈现的LFP / EG // AC LICS具有出色的电化学性能,预计具有广泛的高功率设备,具有成本敏感和高度安全。

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  • 来源
    《RSC Advances》 |2019年第25期|共10页
  • 作者单位

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

    Heilongjiang Inst Petrochem Dept Adhes Harbin 150040 Heilongjiang Peoples R China;

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

    Coll Heilongjiang Prov Key Lab Chem Engn Proc &

    Technol High Efficiency Harbin 150080 Heilongjiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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