Electrode as well as preparation method and application thereof
An electrode and solution technology, applied in the field of electrodes that can generate water hydroxyl groups and its preparation, can solve the problems of easy peeling off and instability of electrode coatings, and achieve the effects of improving electrocatalytic performance, prolonging service life, and improving binding force
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Embodiment 1
[0041] Embodiment 1: Electrode of the present invention and preparation method
[0042] An electrode, the electrode uses titanium alloy as the base material, the outer surface of the base material is coated with a layer of composite material coating, and the composite material coating is prepared by coating the composite material solution, drying, and sintering, wherein the The composite material solution is a nano-solution formed by dissolving transition metal elements in ethanol. The nano-solution takes transition metal particles as solute, and the transition metal elements are iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium. The molar ratio of transition metal elements iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium in the material solution is 17:9:15:17:12:18:40.
[0043] Wherein, the mass percentage of the composite material solution is 30%.
[0044] Wherein, the particle diameter of the transition metal particles in the composite mat...
Embodiment 2
[0053] Embodiment 2: Electrode of the present invention and preparation method
[0054] An electrode, the electrode uses titanium alloy as the base material, the outer surface of the base material is coated with a layer of composite material coating, and the composite material coating is prepared by coating the composite material solution, drying, and sintering, wherein the The composite material solution is a nano-solution formed by dissolving transition metal elements in ethanol. The nano-solution takes transition metal particles as solute, and the transition metal elements are iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium. The molar ratio of transition metal elements iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium in the material solution is 17:9:15:17:12:18:40.
[0055] Wherein, the mass percentage of the composite material solution is 30%.
[0056] Wherein, the particle diameter of the transition metal particles in the composite ma...
Embodiment 3
[0071] Adopt the method described in embodiment 2 to prepare electrodes A, B, C, D, E, wherein the molar ratio of transition metal element iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium in the composite material solution in electrode A is: 18:9:15:17:14:12:40, the molar ratio of tin and antimony in the tin-antimony solution is: 6:10; transition metal elements iridium, platinum, cerium, yttrium, tantalum in the composite material solution in electrode B , The molar ratio of cobalt and titanium is: 18:9:15:17:14:17:40, the molar ratio of tin and antimony in the tin-antimony solution is: 6:10; the transition metal element in the composite material solution in electrode C The molar ratio of iridium, platinum, cerium, yttrium, tantalum, cobalt and titanium is: 18:9:15:17:14:19:40, and the molar ratio of tin and antimony in the tin-antimony solution is: 6:10; the electrode The molar ratio of transition metal elements iridium, platinum, cerium, yttrium, tantalum, c...
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