Cathode material of solid oxide fuel cell in A omission type perovskite structure
A fuel cell cathode, solid oxide technology, used in solid electrolyte fuel cells, fuel cells, battery electrodes, etc., can solve problems such as poor stability, and achieve good battery performance and a wide range of applications.
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Embodiment 1
[0021] BaCO 3 ,,Co 2 o 3 ,, Fe 2 o 3 and Nb 2 o 5 According to the stoichiometric ratio Ba 0.92 (Co 0.7 Fe 0.2 Nb 0.1 )O 3-δ Mix, add alcohol and ball mill for 24 hours to obtain the precursor. After the precursor was dried, it was sintered in the air at 1100°C for 6 hours, and the powder was obtained by solid phase synthesis for the outer layer of the battery cathode; the Ba(NO 3 ) 2 , Co(NO 3 ) 2 .6H 2 O, Fe(NO 3 ) 3 .9H 2 O and NbO(C 2 o 4 )3 According to the stoichiometric ratio Ba 0.92 (Co 0.7 Fe 0.2 Nb 0.1 )O 3-δ Mix, add water to dissolve, add citric acid with the same molar amount of total metal ions, heat and stir at 90°C until it becomes sol or gel, and finally sinter in air at 800°C for 5 hours to obtain nanopowder for battery cathode inner layer. In the following examples, the electrolyte powder in the anode-supported half-cell is obtained by solid-phase synthesis, the anode and the electrolyte are respectively obtained by casting method, ...
Embodiment 2
[0023] BaCO 3 ,,Co 2 o 3 ,, Fe 2 o 3 and Nb 2 o 5 According to the stoichiometric ratio Ba 0.95 (Co 0.6 Fe 0.3 Nb 0.1 )O 3-δ Mix, add alcohol and ball mill for 48 hours to obtain the precursor. After the precursor was dried, it was sintered in the air at 1000°C for 12 hours, and the powder was obtained by solid phase synthesis for the outer layer of the battery cathode; the Ba(NO 3 ) 2 , Co(NO 3 ) 2 .6H 2 O, Fe(NO 3 ) 3 .9H 2 O and NbO(C 2 o 4 ) 3 According to the stoichiometric ratio Ba 0.95 (Co 0.6 Fe 0.3 Nb 0.1 )O 3-δ Mix, add water to dissolve, add citric acid with the same molar amount of total metal ions, heat and stir at 80-100°C until it becomes a sol or gel, and finally sinter at 800°C in air for 5 hours to obtain nanopowder for use in The inner layer of the battery cathode. Fabrication of Ba by coating on NiO-SSZ(500μm) / SSZ(10μm) anode-supported half-cells 0.95 (Co 0.6 Fe 0.3 Nb 0.1 )O 3-δ The cathode is sintered at 900°C for 5 hours. ...
Embodiment 3
[0025] BaCO 3 ,,Co 2 o 3 ,, Fe 2 o 3 and V 2 o 5 According to the stoichiometric ratio Ba 0.99 (Co 0.7 Fe 0.2 V 0.1 )O 3-δ Mix, add alcohol and ball mill for 48 hours to obtain the precursor. After the precursor was dried, it was sintered in air at 1100°C for 24 hours, and the powder was obtained by solid phase synthesis for the outer layer of the battery cathode; the Ba(NO 3 ) 2 , Co(NO 3 ) 2 .6H 2 O, Fe(NO 3 ) 3 .9H 2 O and C 10 o 20 V 2 According to the stoichiometric ratio Ba 0.99 (Co 0.7 Fe 0.2 V 0.1 )O 3-δ Mix, add water to dissolve, add citric acid twice the molar amount of the total metal ions, heat and stir at 80-100°C until it becomes sol or gel, and finally sinter in air at 800°C for 6 hours to obtain nano-pure cathode powder body; the Sm(NO 3 ) 3 .6H 2 O, Ce(NO 3 ) 3 .6H 2 Mix and dissolve O in water, add glycine with 2 times the molar amount of total metal ions, burn at high temperature to obtain precursor powder, and then sinter at...
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