会议论文详细信息
2nd international Tropical Renewable Energy Conference 2017
Effect of nano Si addition on synthesized LTO for lithium battery anode
Zulfia, A.^1,2 ; Satria, R.^1 ; Priyono, B.^1 ; Subhan, A.^1
Departemen Metalurgi and Material, Universitas Indonesia, Kampus UI, Depok, Jawa Barat
16424, Indonesia^1
Pusat Penelitian Fisika, LIPI, Komplek PUSPIPTEK, Banten, Tangerang Selatan
15314, Indonesia^2
关键词: Anode components;    Battery performance;    Lithium battery anode;    Mass variations;    Material characterizations;    Mechano-chemical methods;    Strain properties;    Theoretical capacity;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/105/1/012107/pdf
DOI  :  10.1088/1755-1315/105/1/012107
来源: IOP
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【 摘 要 】

Li4Ti5O12or LTO is one of many compounds that could be used as anode component in lithium battery. The most interesting aspect of using LTO as an anode is its long cycle life which is affected by its zero strain property during insertion and extraction of lithium ions. Despite its advantages, LTO still has problem in its capacity value which is limited to 175 mAh/g. Researchers have tried many methods to increase the capacity of LTO, such as making a composite from LTO host. In this composite, nano sized Si is used as additional element because its high theoretical capacity could increase the overall capacity of the LTO composite. In this research, LTO was synthesized by hydrothermal-mechanochemical methods before we mix it with nano Si in slurry making process. The mass variation of nano Si was 1%, 5%, and 10% in wt. XRD and SEM were used for material characterization. For the battery performance testing we used EIS, CV, and CD. This research will explain the effect of Si on the LTO/Si composite performance. From the testing, it is known that the highest capacity was obtained from LTO/Si-10% sample with 216.15 mAh/g, and able to retain 42.76% of its capacity at higher C-rate (4C). The results show that LTO/Si-10% could be used as an alternative for anode component.

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