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http://dx.doi.org/10.3740/MRSK.2009.19.2.073

Influence of Sputtering Conditions on Structural and Electrochemical Properties of the Si Anode Film for Lithium Secondary Batteries  

Joo, Seung-Hyun (Department of Materials Science and Engineering, Korea University)
Lee, Seong-Rae (Department of Materials Science and Engineering, Korea University)
Cho, Won-Il (Battery Research Center, KIST)
Cho, Byung-Won (Battery Research Center, KIST)
Publication Information
Korean Journal of Materials Research / v.19, no.2, 2009 , pp. 73-78 More about this Journal
Abstract
This study investigated the dependence of the various sputtering conditions (Ar pressure: $2{\sim}10\;mTorr$, Power: $50{\sim}150\;W$) and thickness ($50{\sim}1200\;nm$) of Si thin film on the electrochemical properties, microstructural properties and the capacity fading of a Si thin film anode. A Si layer and a Ti buffer layer were deposited on Copper foil by RF-magnetron sputtering. At 10 mTorr, the 50 W sample showed the best capacity of 3323 mAh/g, while the 100 W sample showed the best capacity retention of 91.7%, also at 10 mTorr. The initial capacities and capacity retention in the samples apart from the 50W sample at 10 mTorr were enhanced as the Ar pressure and power increased. This was considered to be related to the change of the microstructure and the surface morphology by various sputtering conditions. In addition, thinner Si film anodes showed better cycling performance. This phenomenon is caused by the structural stress and peeling off of the Si layer by the high volume change of Si during the charge/discharge process.
Keywords
lithium ion battery; silicon anode; deposition condition; sputtering;
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