A material for use as a spinel cathode for lithium-ion batteries was synthesized for the first time using a hydrothermal approach. The effects of the LiOH concentration and hydrothermal temperature on the hydrothermal products were investigated systematically, where the LiOH concentration (e.g., ) was proven critical to successfully synthesize the spinel. At low LiOH concentrations (e.g., ), the obtained products may be MnOOH, , and spinel, while high concentrations (e.g., ) favor the phase. The particle size of the as-prepared spinel is ca. , and its formation is associated with the dissolution-recrystallization mechanism from an amorphous precursor. Cell tests show that the as-prepared material obtained at exhibits a capacity of ca. at a current density of , where ca. above . Such a material shows an excellent rate capability with a capacity of ca. delivered at , 73% of that obtained at .
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Huang et al. (2010) studied this question.
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