by in situ recombination co 3 o 4 Method and Application of Improving Discharge Capacity and High Rate Discharge Performance of Hydrogen Storage Alloy
A high-rate discharge, hydrogen storage alloy technology, applied in battery electrodes, circuits, nickel batteries, etc., can solve the problems of decreased utilization rate and limited battery performance improvement, and achieve the effect of reducing internal resistance and improving dynamic performance.
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[0037] The preparation process and steps in this embodiment are as follows:
[0038] (1) Melting lanthanum, cerium, yttrium, nickel, cobalt, manganese, aluminum with a purity of ≥99.5 by arc melting in a high-purity argon atmosphere to obtain ingots; anneal the ingots under an argon protective atmosphere and The powder of the master alloy was obtained by mechanical grinding, and its average particle diameter was 50 μm; 3 ) 2 , 2mM CTAB, 5ml ultrapure water, and 30ml ethanol are mixed evenly and added to the reaction kettle. In order to optimize the Co in the composite 3 o 4 The amount of different Co(NO 3 ) 2 Concentrations of composite materials, 9mM and 12mM Co(NO 3 ) 2 Also used in the preparation of composite materials respectively. Put the sealed reaction kettle in an electric oven at 180°C for 90 minutes, and grow Co in situ on the surface of the alloy powder. 3 o 4 . Obtained HSAs / Co 3 o 4 The composite was washed with water and ethanol, filtered with filte...
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