Integrated transition metal-based oxygen evolution catalytic material and preparation method
A catalytic material, transition metal technology, applied in non-precious metal oxide coatings, electrode coatings, electrolysis processes, etc., can solve the problems of increasing electrode series resistance, easy agglomeration, hindering effective mass transfer, etc., to improve the ability to form amorphous Effect
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Embodiment 1
[0081] With (Ni 0.4 co 0.4 P 0.2 ) 97 Ru 3 Amorphous and nanocrystalline alloy thin strips are used as precursors to prepare target electrodes, and the preparation method is as follows:
[0082] Step 1, mix target ingredients;
[0083] According to (Ni 0.4 co 0.4 P 0.2 ) 97 Ru 3 The target composition of the target is to weigh Ni, Co, P, Ru elemental elements in sequence, and the purity of each element is not less than 99.9%;
[0084] Step 2, preparing a master alloy;
[0085] In step 21, Ni and P are smelted in a vacuum induction melting furnace, the smelting protective atmosphere is argon with a mass percentage of 99.999%, and the vacuum degree is 3×10 -3 Pa, the smelting current is 80A, smelting for 6min, and NiP pre-alloyed ingot is prepared;
[0086] Step 22, put the NiP pre-alloyed ingot and Co and Ru elements into a vacuum arc melting furnace for melting, the melting protective atmosphere is argon gas with a mass percentage of 99.999%, and the vacuum degree ...
Embodiment 2
[0106] With (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 3 Amorphous and nanocrystalline alloy thin strips are used as precursors to prepare target electrodes, and the preparation method is as follows:
[0107] Step 1, mix target ingredients;
[0108] According to (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 3 The target composition of target weighs Ni, Fe, B, Ru elemental elements sequentially, and the purity of each element is not less than 99.0%;
[0109] Step 2, making master alloy;
[0110] Put the weighed Ni, Fe, B, Ru elements into a vacuum arc melting furnace for smelting, the smelting protective atmosphere is argon with a mass percentage of 99.999%, and the vacuum degree is 8×10 -3 Pa, smelting current is 90A, smelting 2min, smelting 5 times, prepared (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 3 master alloy ingot;
[0111] Step 3, preparing an amorphous nanocrystalline alloy thin strip by a melt spin quenching method;
[0112] (Ni 0.4 Fe 0.4 B0.2 ) 97 Ru 3 The master alloy is mechanically c...
Embodiment 3
[0128] With (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 1.5 Ir 1.5 Amorphous and nanocrystalline alloy thin strips are used as precursors to prepare target electrodes, and the preparation method is as follows:
[0129] Step 1, mix target ingredients;
[0130] According to (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 1.5 Ir 1.5 The target components of Ni, Fe, B, Ru, Ir are weighed in sequence, and the purity of each element is not less than 99.0%;
[0131] Step 2, making master alloy;
[0132] Target Put the weighed Ni, Fe, B, Ru, and Ir elements into a vacuum arc melting furnace for melting. The melting protective atmosphere is argon with a mass percentage of 99.999%; the vacuum degree is 7.8×10 -3 Pa, smelting current is 90A, smelting 2min, smelting 6 times, prepared (Ni 0.4 Fe 0.4 B 0.2 ) 97 Ru 1.5 Ir 1.5 Master alloy ingot.
[0133] Step 3, preparing an amorphous nanocrystalline alloy thin strip by a melt spin quenching method;
[0134] The master alloy obtained in step 2 is mechani...
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