Materials Research Bulletin, Vol.48, No.7, 2497-2503, 2013
Comprehensive methods to enhance the electrochemical performances of LiFe0.94Mg0.03Cu0.03PO4/C cathode for lithium ion batteries
Comprehensive methods were utilized to improve the electrochemical performances of LiFe0.94Mg0.03Cu0.03PO4/C (LFPC) composite cathode. Experimental results show that LFPC-2, prepared by adding glucose in two steps, possesses the effective incorporated of doping ions and well-distributed pyrolysis carbon. It possesses higher conductivity and discharge capacity. The percolation theory analysis shows that the conductivity of LFPC-2 cathode film reaches its maximum value at the mass content of 15 wt.%. The replacement of acetylene black with polyaniline can greatly improve the electrochemical performances of LFPC-2 cathode. Its discharge capacity is 85.3 mAh g(-1) and its potential platform is as high as 3.2 V at the current density of 850 mA g(-1) when 15 wt.% polyaniline is used. The cycle performance of LFPC-2 is improved when polyaniline is used as conductive additives. And the change of charge transfer resistance of LFPC-2 cathode containing polyaniline is very small after 24 cycles. (C) 2013 Elsevier Ltd. All rights reserved.
Keywords:Inorganic compounds;Ceramics;Crystal growth;Electrochemical measurements;Electrochemical properties