Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries

A silicon/graphite/amorphous carbon (Si/C) composite with a low silicon content in a coreeshellstructure has been easily synthesized using a simple method based on spray drying in combination with a subsequent pyrolysis process; natural graphite serves as the core, and silicon nanoparticles, which f...

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Main Authors: Li, M., Hou, X., Sha, Y., Wang, J., Hu, S., Liu, X., Shao, Zongping
Format: Journal Article
Published: Elsevier SA 2014
Online Access:http://hdl.handle.net/20.500.11937/26051
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author Li, M.
Hou, X.
Sha, Y.
Wang, J.
Hu, S.
Liu, X.
Shao, Zongping
author_facet Li, M.
Hou, X.
Sha, Y.
Wang, J.
Hu, S.
Liu, X.
Shao, Zongping
author_sort Li, M.
building Curtin Institutional Repository
collection Online Access
description A silicon/graphite/amorphous carbon (Si/C) composite with a low silicon content in a coreeshellstructure has been easily synthesized using a simple method based on spray drying in combination with a subsequent pyrolysis process; natural graphite serves as the core, and silicon nanoparticles, which filled in the porous carbon matrix formed from the pyrolysis of citric acid and pitch precursors, serve as the shell. The combination of the coreeshell structure for the composite and porous carbon-coating layer accommodates the large volume change of the silicon during the lithium intercalation/extraction process, thus stabilizing the electrode structure during discharge/charge cycles. As an anode material, the asobtained Si/C composite demonstrates high capacity and excellent cycle stability. An initial specific discharge capacity of approximately 723.8 mAh g1 and a reversible specific capacity of approximately 600 mAh g1 after 100 cycles at a constant density of 100 mA g1 are reached, about two times the values for graphite. Due to the simple synthesis process and the excellent performance of the resulted electrode, great commercial potential is envisioned.
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:59:41Z
publishDate 2014
publisher Elsevier SA
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spelling curtin-20.500.11937-260512017-09-13T15:56:20Z Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries Li, M. Hou, X. Sha, Y. Wang, J. Hu, S. Liu, X. Shao, Zongping A silicon/graphite/amorphous carbon (Si/C) composite with a low silicon content in a coreeshellstructure has been easily synthesized using a simple method based on spray drying in combination with a subsequent pyrolysis process; natural graphite serves as the core, and silicon nanoparticles, which filled in the porous carbon matrix formed from the pyrolysis of citric acid and pitch precursors, serve as the shell. The combination of the coreeshell structure for the composite and porous carbon-coating layer accommodates the large volume change of the silicon during the lithium intercalation/extraction process, thus stabilizing the electrode structure during discharge/charge cycles. As an anode material, the asobtained Si/C composite demonstrates high capacity and excellent cycle stability. An initial specific discharge capacity of approximately 723.8 mAh g1 and a reversible specific capacity of approximately 600 mAh g1 after 100 cycles at a constant density of 100 mA g1 are reached, about two times the values for graphite. Due to the simple synthesis process and the excellent performance of the resulted electrode, great commercial potential is envisioned. 2014 Journal Article http://hdl.handle.net/20.500.11937/26051 10.1016/j.jpowsour.2013.10.012 Elsevier SA restricted
spellingShingle Li, M.
Hou, X.
Sha, Y.
Wang, J.
Hu, S.
Liu, X.
Shao, Zongping
Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title_full Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title_fullStr Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title_full_unstemmed Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title_short Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
title_sort facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for li-ion batteries
url http://hdl.handle.net/20.500.11937/26051