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一种化学活化石墨烯包裹的 LiFePO4 复合材料,用于高性能锂离子电池。

A chemically activated graphene-encapsulated LiFePO4 composite for high-performance lithium ion batteries.

机构信息

Graduate School of Convergence Science and Technology, Seoul National University, Seoul, 151-742, Republic of Korea.

出版信息

Nanoscale. 2013 Sep 21;5(18):8647-55. doi: 10.1039/c3nr02738d.

Abstract

A composite of modified graphene and LiFePO4 has been developed to improve the speed of charging-discharging and the cycling stability of lithium ion batteries using LiFePO4 as a cathode material. Chemically activated graphene (CA-graphene) has been successfully synthesized via activation by KOH. The as-prepared CA-graphene was mixed with LiFePO4 to prepare the composite. Microscopic observation and nitrogen sorption analysis have revealed the surface morphologies of CA-graphene and the CA-graphene/LiFePO4 composite. Electrochemical properties have also been investigated after assembling coin cells with the CA-graphene/LiFePO4 composite as a cathode active material. Interestingly, the CA-graphene/LiFePO4 composite has exhibited better electrochemical properties than the conventional graphene/LiFePO4 composite as well as bare LiFePO4, including exceptional speed of charging-discharging and excellent cycle stability. That is because the CA-graphene in the composite provides abundant porous channels for the diffusion of lithium ions. Moreover, it acts as a conducting network for easy charge transfer and as a divider, preventing the aggregation of LiFePO4 particles. Owing to these properties of CA-graphene, LiFePO4 could demonstrate enhanced and stably long-lasting electrochemical performance.

摘要

一种以 LiFePO4 为阴极材料的复合改性石墨烯和 LiFePO4,用于改善锂离子电池的充放电速度和循环稳定性。通过 KOH 活化成功合成了化学活化石墨烯(CA-graphene)。将制备的 CA-graphene 与 LiFePO4 混合制备复合材料。微观观察和氮气吸附分析揭示了 CA-graphene 和 CA-graphene/LiFePO4 复合材料的表面形态。组装带有 CA-graphene/LiFePO4 复合材料作为阴极活性材料的硬币电池后,还研究了电化学性能。有趣的是,与传统的石墨烯/LiFePO4 复合材料以及裸露的 LiFePO4 相比,CA-graphene/LiFePO4 复合材料表现出更好的电化学性能,包括出色的充放电速度和优异的循环稳定性。这是因为复合材料中的 CA-graphene 为锂离子的扩散提供了丰富的多孔通道。此外,它充当了易于电荷转移的导电网络,以及防止 LiFePO4 颗粒聚集的隔板。由于 CA-graphene 的这些特性,LiFePO4 可以表现出增强的和稳定持久的电化学性能。

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