Alloy electrocatalyst for ultra-stable PEM oxygen evolution reaction and preparation method thereof
A technology of electrocatalyst and oxygen evolution reaction, applied in the direction of non-precious metal oxide coating, electrode, electrode coating, etc., can solve the problems of easy corrosion, catalyst change, PEM electrolysis hydrogen production equipment overall performance attenuation, etc., to achieve ultra-high Stability, simple preparation process, suitable for large-scale industrial production
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Embodiment 1
[0032] In this example, the nominal composition of the alloy we choose is W 80 Ir 20 , the preparation of the electrocatalyst material is as follows:
[0033](1) Master alloy ingot preparation: according to the nominal composition W of the master alloy 80 Ir 20 The alloy raw materials W and Ir (purity 98.0-99.9wt%) are mixed, and then under the protection of high-purity Ar atmosphere, arc melting is carried out. The melting current is 200A-300A. In order to ensure the uniform composition of the alloy, the master alloy is repeatedly turned over in the furnace Melting more than four times to obtain a master alloy ingot.
[0034] (2) Alloy casting molding: The uniform master alloy ingot in step (1) is melted again by electric arc melting, and then the molten alloy is infiltrated into the water-cooled copper mold by negative pressure suction casting, and the alloy melt is in the copper mold. Medium cooling to obtain a W with a diameter of 2mm 80 Ir 20 Electrocatalyst rods. ...
Embodiment 2
[0038] In this example, the nominal composition of the alloy we choose is W 60 Ir 40 , the preparation method of the electrocatalyst material is the same as in Example 1.
[0039] The alloy of gained is carried out acidic oxygen evolution reaction performance test, and test adopts three-electrode device, and test scheme is identical with embodiment 1, W 60 Ir 40 Alloy electrode material reaches 10mA / cm 2 The overpotential required for the catalytic current density is as low as about 300mV. Prepared W 60 Ir 40 The alloy electrocatalyst electrode can operate stably in 0.5mol / L sulfuric acid electrolyte for more than 1000h, and still maintain high electrocatalytic activity, and the overpotential rise rate within 1000 hours is less than 4μV / h. prove W 60 Ir 40 The alloy electrode material has electrocatalytic oxygen evolution activity.
Embodiment 3
[0041] In this example, the nominal composition of the alloy we choose is Mo 80 Ir 20 , the preparation method of the electrocatalyst material is the same as in Example 1.
[0042] The obtained alloy is subjected to acidic oxygen evolution reaction performance test, and the test adopts a three-electrode device, and the test scheme is the same as in Example 1, Mo 80 Ir 20 Alloy electrode material reaches 10mA / cm 2 The overpotential required for the catalytic current density is as low as 643mV. Prepared Mo 80 Ir 20 The alloy electrocatalyst electrode can operate stably in 0.5mol / L sulfuric acid electrolyte for more than 1000h, and still maintain high electrocatalytic activity, and the overpotential rise rate within 1000 hours is less than 7μV / h. prove Mo 80 Ir 20 The alloy electrode material has electrocatalytic oxygen evolution activity.
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