Issue 38, 2014

Porous olive-like carbon decorated Fe3O4 based additive-free electrodes for highly reversible lithium storage

Abstract

Porous nanostructured olive-like carbon decorated Fe3O4 (Fe3O4/C) was prepared via in situ carbothermal treatment of the porous olive-like composite of Fe2O3/C. The precursor porous olive-like Fe2O3/C nanoparticles were prepared through an ultrafast (75 min) one-pot solvothermal method. The porous olive-like Fe3O4/C and its precursor Fe2O3/C nanostructures were formed by aggregation of orderly aligned nanorods as building subunits. The successful conversion from Fe2O3/C to Fe3O4/C by in situ carbothermic partial reduction was evidenced by extensive characterization. Additionally, a novel centrifugation-assisted procedure (CAP) to prepare additive-free Fe3O4 based electrodes with active materials directly synthesized on the current collector was developed for the first time. The porous olive-like Fe2O3/C nanoparticles dispersed in ethanol were coated on Cu current collectors by centrifugation-assisted deposition (CAD) directly without any additives employed and subsequently heated to convert to a Fe3O4/C coated Cu disc which can be used as an electrode without any further process. In contrast, traditional electrode preparation involves multiple steps of slurry preparation, coating, drying in a vacuum oven and additives (e.g., PVDF binder, carbon black conductivity enhancer and NMP solvent) are employed in the process. The as-prepared additive-free porous Fe3O4/C based electrode exhibited superior electrochemical performances in lithium storage. Excellent cycling performance was achieved with a specific capacity at ∼800 mA h g−1 for at least 235 cycles. Impressive rate performance was accomplished when tested under different currents: no significant capacity drop was observed when current was doubled and a specific capacity of 730 mA h g−1 could be maintained at current of 1500 mA g−1.

Graphical abstract: Porous olive-like carbon decorated Fe3O4 based additive-free electrodes for highly reversible lithium storage

Supplementary files

Article information

Article type
Paper
Submitted
11 Jun 2014
Accepted
29 Jul 2014
First published
29 Jul 2014

J. Mater. Chem. A, 2014,2, 16008-16014

Author version available

Porous olive-like carbon decorated Fe3O4 based additive-free electrodes for highly reversible lithium storage

J. Zhu, K. Y. S. Ng and D. Deng, J. Mater. Chem. A, 2014, 2, 16008 DOI: 10.1039/C4TA02958E

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