Enabling stable and high-rate of an olivine-type cathode LiFePO4 for Li-ion batteries by using graphene nanoribbons as conductive agent

IF 1.7 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Natural Sciences: Nanoscience and Nanotechnology Pub Date : 2023-03-01 DOI:10.1088/2043-6262/acc734
T. T. Nguyen, Nhu Quynh Nguyen, Duong Thai, Tu Doanh Tieu, V. Tran, M. Le
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Abstract

In this study, graphene nanoribbons (GNBs) were utilized as a conductive agent for the olivine structure-based cathode LiFePO4 to facilitate the fast redox reaction and enable a high-rate battery performance. As a result, the cathodes comprising 5 wt% graphene nanoribbons and 10 wt% conductive carbon nanoparticles exhibited the maximum capacity, 163.25 mAh.g−1 at 0.1C and 130.60 mAh.g−1 at 2C with excellent capacity retention after 100 cycles. In addition, graphene nanoribbons demonstrate positive impacts on the charge transfer process. Still, the high concentration of GNBs in the cathode weakens the adhesion properties and will need further optimization in the slurry mixing process.
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以石墨烯纳米带为导电剂,制备出稳定、高倍率的锂离子电池用橄榄石型正极LiFePO4
在这项研究中,石墨烯纳米带(GNBs)被用作橄榄石结构基阴极LiFePO4的导电剂,以促进快速氧化还原反应并实现高倍率电池性能。结果表明,含有5 wt%石墨烯纳米带和10 wt%导电碳纳米颗粒的阴极表现出最大容量,为163.25 mAh。g−1在0.1C和130.60 mAh。g−1在2C具有优异的容量保持100循环后。此外,石墨烯纳米带对电荷转移过程也有积极的影响。然而,阴极中高浓度的GNBs削弱了粘结性能,在料浆混合过程中需要进一步优化。
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Advances in Natural Sciences: Nanoscience and Nanotechnology
Advances in Natural Sciences: Nanoscience and Nanotechnology NANOSCIENCE & NANOTECHNOLOGYMATERIALS SCIE-MATERIALS SCIENCE, MULTIDISCIPLINARY
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