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http://dx.doi.org/10.9726/kspse.2013.17.1.110

The Research on Aluminum and Silcon Nanoparticles as Anode Materials for Lithium Ion Batteries  

Kim, Hyeong-Jo (Department of Precision Mechanical Engineering, Graduation School, Gyeongsang National University)
Tulugan, Kelimu (Department of Precision Mechanical Engineering, Graduation School, Gyeongsang National University)
Kim, Hyung-Jin (Department of Mechanic System Engineering, Gyeongsang National University)
Park, Won-Jo (Department of Energy Mechanical Engineering, Gyeongsang National University)
Publication Information
Journal of Power System Engineering / v.17, no.1, 2013 , pp. 110-115 More about this Journal
Abstract
The electrochemical performance and microstructure of Al-Si, Al-Si/C was investigated as anode for lithium ion battery. The Al-Si nano composite with 5 : 1 at% ratio was prepared by arc-discharge nano powder process. However, some of problem is occurred, when Al nano composite was synthesized by this manufacturing. The oxidation film is generated around Al-Si particles for passivating processing in the manufacture. The oxidation film interrupts electrical chemistry reaction during lithium ion insertion/extraction for charge and discharge. Because of the existence the oxidation film, Al-Si first cycle capacity is very lower than other examples. Therefore, carbon synthsized by glucose ($C_6H_{12}O_6$) was conducted to remove the oxidation film covered on the composite. The results showed that the first discharge cycle capacity of Al-Si/C is improved to 113mAh/g comparing with Al-Si (18.6mAh/g). Furthermore, XRD data and TEM images indicate that $Al_4C_3$ crystalline exist in Al-Si/C composite. In addition the Si-Al anode material, in which silicon is more contained was tested by same method as above, it was investigated to check the anode capacity and morphology properties in accordance with changing content of silicon, Si-Al anode has much higher initial discharge capacity(about 500mAh/g) than anode materials based on Aluminum as well as the morphology properties is also very different with the anode based Aluminum.
Keywords
Nanoparticle; Arc-discharge Method; Anode Material; Lithium Ion Battery;
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