Preparation method of carbon surface modified hydrogen storage alloy and method for improving anode catalytic performance of direct borohydride fuel cell
A hydrogen storage alloy and surface modification technology, which is applied to battery electrodes, circuits, electrical components, etc., can solve the problems of low catalytic activity of hydrogen storage alloys and reduced utilization of NaBH4
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Embodiment 1
[0035] Carbon nanotubes are used to modify the hydrogen storage alloy, and the ratio of carbon nanotubes to hydrogen storage alloy is 2:98. With carbon rod as counter electrode, Ag / AgCl as reference electrode, carbon nanotube modified hydrogen storage alloy as working electrode, in 2M NaOH and 0.10M NaBH 4 In the solution, under the voltage of -0.7V vs.Ag / AgCl, the chronocurrent density reaches 35mA / cm 2 , and NaBH 4 Hydrolysis does not occur.
Embodiment 2
[0037] Activated carbon is used to modify the hydrogen storage alloy, and the ratio of activated carbon to hydrogen storage alloy is 2:98. With carbon rod as counter electrode, Ag / AgCl as reference electrode, activated carbon tube modified hydrogen storage alloy as working electrode, in 2M NaOH and 0.10M NaBH 4 In the solution, under the voltage of -0.7V vs.Ag / AgCl, the chronocurrent density reaches 32mA / cm 2 , and NaBH 4 Hydrolysis does not occur.
Embodiment 3
[0039] Carbon black is used to modify the hydrogen storage alloy, and the ratio of carbon black to hydrogen storage alloy is 2:98. With carbon rod as counter electrode, Ag / AgCl as reference electrode, carbon nanotube modified hydrogen storage alloy as working electrode, in 2M NaOH and 0.10M NaBH 4 In the solution, under the voltage of -0.7V vs.Ag / AgCl, the chronocurrent density reaches 30mA / cm 2 , and NaBH 4 Hydrolysis does not occur.
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