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Lityum iyon piller için yüksek kapasiteli LiFePO4/C/rGO nanokompozit pozitif elektrot

2022
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Advisor: Doç. Dr. Tuğrul Çetinkaya

Abstract (EN)

The development of new electrode materials with superior electrochemical capabilities, primarily dictated by the cathode materials, is required for widespread and extended applications of Li-ion secondary batteries. Because of its excellent stability, availability, and environmental friendliness, LiFePO4 (LFP) is widely recognized as a viable cathode material. This study used a low-cost iron (III) as the base material to manufacture single-phase LFP material with submicron particles using a simple solution combustion process based on the glycine–nitrate technique. The optimal Glycine to LiFePO4 ratio was found to be as 1:4 to produce high purity LiFePO4 and produced LiFePO4 showed 102 mAh/g discharge capacity at the constant rate of C/20. Sucrose was utilized as a carbon source to obtain carbon-coated LiFePO4 powders. The discharge capacity of the as-prepared LiFePO4/C sample with 12% carbon content is around 157 mAh/g at a 0.1 C rate and 88 mAh/g at a 5 C rate. Furthermore, throughout the 50-cycle at varying current rates, the electrodes showed excellent cycling performance. To enhance the capacity of carbon-coated LiFePO4, different amount of Graphene was reinforced to the cathode material. The carbon-coated lithium iron phosphate with 4 wt.% graphene showed a specific capacity of 197 mAh/g. The highly conductive graphene flakes wrapped around carbon-coated lithium iron phosphate enhance electron migration during charge and discharge operations, decreasing irreversible capacity during the first cycle and resulting in a coulombic efficiency of 99% at varied C-rates.

Author

Dr. Ali Jamal Abdulkareem Abdulkareem

How to Cite

Ali Jamal Abdulkareem Abdulkareem (Master Thesis). Lityum iyon piller için yüksek kapasiteli LiFePO4/C/rGO nanokompozit pozitif elektrot, 2022, Sakarya University.

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