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In this paper, carbon coated Li5Cr9Ti4O24 is prepared by using cystine as carbon source, which results in the formation of carbon co-doped with nitrogen/sulfur (CNS) coating layer after pyrolysis. Compared with carbon free Li5Cr9Ti4O24, the resulting Li5Cr9Ti4O24@CNS exhibits enhanced lithium storage capability. Cycled at 500mAg−1, it can be found that carbon free Li5Cr9Ti4O24 can only deliver the...
In this work, a novel lithium storage material Li5Cr9Ti4O24 is reported as anode material for rechargeable lithium-ion batteries. We prepare Li5Cr9Ti4O24 by two different routes, sol-gel method and solid state reaction. Li5Cr9Ti4O24 nanocrystalline can be achieved by sol-gel method, while solid state reaction delivers micro-sized product. Electrochemical results show that Li5Cr9Ti4O24 nanocrystalline...
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