Improvement of specific capacity of lithium iron phosphate battery by increasing the surface area and electrical conductivity of cathode electrode using graphene foam

IF 0.7 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Phurida KOKMAT, Patiphat MATSAYAMAT, Kunaree WONGRACH, Piyaporn SURINLERT, Akkawat RUAMMAITREE
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引用次数: 1

Abstract

Lithium iron phosphate (LFP) is widely used as an active material in a cathode electrode for lithium-ion batteries (LIBs). LFP has many remarkable properties such as high working voltage and excellent thermal stability. However, it suffers with slow ion diffusion and low electrical conductivity. Graphene foam has many outstanding properties such as large surface area and great electrical conductivity. These properties are suitable for improving the cathode electrode. In this work, the graphene foam was synthesized by chemical vapor deposition. The cathode electrode was prepared by dropping the LFP on the graphene foam. We found that the specific capacity of battery which contained the LFP between the anode and the graphene foam (LFP/GF) was 23.1 mAh⸳g-1 at 3C, while the specific capacity of battery which contained the graphene foam between the anode and the LFP (GF/LFP) was 112.6 mAh⸳g-1 at 3C. The diffusion coefficients of Li+ of GF/LFP was 9.1 times higher than that of LFP/GF. The specific capacity of GF/LFP was higher than that of LFP/GF at high current density due to the high ion transfer rate which arises from the graphene foam.
利用泡沫石墨烯增加阴极电极的表面积和电导率提高磷酸铁锂电池的比容量
磷酸铁锂(LFP)作为锂离子电池(LIBs)正极的活性材料被广泛应用。LFP具有工作电压高、热稳定性好等显著性能。然而,它的缺点是离子扩散慢,电导率低。石墨烯泡沫具有比表面积大、导电性好等特点。这些性能适合于对阴极电极进行改进。本文采用化学气相沉积法制备了泡沫石墨烯。将LFP滴在石墨烯泡沫上制备阴极电极。我们发现,在3C时,在阳极和泡沫石墨烯之间含有LFP的电池比容量为23.1 mAh⸳g-1,而在阳极和泡沫石墨烯之间含有LFP的电池比容量为112.6 mAh⸳g-1。GF/LFP的Li+扩散系数是LFP/GF的9.1倍。在高电流密度下,GF/LFP的比容量高于LFP/GF,这是由于石墨烯泡沫产生的高离子转移速率。
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来源期刊
Journal of metals, materials and minerals
Journal of metals, materials and minerals MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
11.10%
发文量
0
期刊介绍: Journal of Metals, Materials and Minerals (JMMM) is a double-blind peer-reviewed international journal published 4 issues per year (starting from 2019), in March, June, September, and December, aims at disseminating advanced knowledge in the fields to academia, professionals and industrialists. JMMM publishes original research articles as well as review articles related to research and development in science, technology and engineering of metals, materials and minerals, including composite & hybrid materials, concrete and cement-based systems, ceramics, glass, refractory, semiconductors, polymeric & polymer-based materials, conventional & technical textiles, nanomaterials, thin films, biomaterials, and functional materials.
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