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Preparation of 3D micro/mesoporous LiFePO4 composite wrapping with porous graphene oxide for high-power lithium ion battery

  • Chun Chen Yang*
  • , Yu Hua Hsu
  • , Jeng Ywan Shih
  • , Yi Shiuan Wu
  • , Chelladurai Karuppiah
  • , Tzong Horng Liou
  • , Shingjiang Jessie Lue
  • *此作品的通信作者
  • Ming Chi University of Technology
  • Chang Gung University
  • Chang Gung Memorial Hospital

研究成果: 期刊稿件文章同行評審

35 引文 斯高帕斯(Scopus)

摘要

A 3D spray-dried micro/mesoporous LiFePO4/porous graphene oxide/C (denoted as SP-LFP/PGO/C) composite material is synthesized via a three-step process, i.e., hydrothermal process, carbon coating, and spray dry method in sequence. The 2D porous graphene oxide (denoted as PGO) material is first prepared through an activation method. The galvanostatic charge-discharge measurements of LFP composites without graphene oxide, with 1 wt% graphene oxide, and 1 wt% PGO are conducted in the potential range of 2–3.8 V at various rates (0.1–10C). It is revealed that the SP-LFP/PGO/C material shows the best performance among three samples. The discharge capacities of the SP-LFP/PGO/C composites are observed to 160, 152, 151, 149, 144, 139, 127 mAh g−1 at 0.1C, 0.2C, 0.5C, 1C, 3C, 5C and 10C rate. In particular, the discharge capacity of the SP-LFP/PGO/C composite with 1 wt% PGO is 107 mAh g−1 after 1000 cycles at a 10C rate, and its capacity retention is ca. 97%. It is due to the unique structural and geometrical feature of SP-LFP/PGO/C composite, there the diamond-like (rhombus) LFP nanoparticles are embedded in porous GO matrix which forming a porous three-dimensional network for fast electronic and ionic transport channels.

原文英語
頁(從 - 到)773-785
頁數13
期刊Electrochimica Acta
258
DOIs
出版狀態已出版 - 20 12 2017

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Publisher Copyright:
© 2017 Elsevier Ltd

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