Platinum-nickel-iridium ternary ordered octahedral body and synthetic method thereof
A synthesis method, octahedral technology, applied in nanotechnology, nanotechnology, metal processing equipment and other directions for materials and surface science, can solve problems such as loss of catalytic activity of nickel, slow down corrosion and oxidation, improve service life, The effect of improving selectivity
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Embodiment 1
[0032] A platinum-nickel-iridium ternary ordered octahedron, the particles are 10-40nm particles, and the platinum is mainly distributed in the central area inside the particles, and the iridium is mainly distributed in the edge and corner areas.
[0033] The synthetic method of above-mentioned platinum-nickel-iridium ternary ordered octahedron comprises the following steps:
[0034] (1) Pipette 5 mL of oleylamine and 0 mL of oleic acid respectively, put the above substances in the same reactor, stir and mix evenly;
[0035] (2) Weigh 1 mg of platinum (II) acetylacetonate, 20 mg of nickel (II) acetylacetonate and 5 mg of iridium (III) acetylacetonate respectively, put them into the above mixed solution, stir, and dissolve evenly;
[0036] (3) The reactor is first vacuumed and degassed at room temperature, and then filled with argon to 1 atmospheric pressure. The above-mentioned vacuum degassed and argon filled operations are repeated 3 times, and finally the reactor is kept fu...
Embodiment 2
[0039] A platinum-nickel-iridium ternary ordered octahedron, the particles are 60-100nm particles, and the platinum is mainly distributed in the central area inside the particles, and the iridium is mainly distributed in the edge and corner areas.
[0040] The synthetic method of above-mentioned platinum-nickel-iridium ternary ordered octahedron comprises the following steps:
[0041] (1) Pipette 50 mL of oleylamine and 10 mL of oleic acid respectively, put the above substances in the same reactor, stir and mix evenly;
[0042] (2) Weigh 5 mg of platinum (II) acetylacetonate, 100 mg of nickel (II) acetylacetonate and 10 mg of iridium (III) acetylacetonate respectively, put them into the above mixed solution, stir, and dissolve evenly;
[0043] (3) The reactor is first vacuumized and degassed at room temperature, and then filled with argon to 1 atmospheric pressure. The above-mentioned vacuumized degassing and argon filling operations are repeated 6 times, and finally the react...
Embodiment 3
[0046] A platinum-nickel-iridium ternary ordered octahedron, the particles are 20-50nm particles, and the platinum is mainly distributed in the central area inside the particles, and the iridium is mainly distributed in the edge and corner areas.
[0047] The synthetic method of above-mentioned platinum-nickel-iridium ternary ordered octahedron comprises the following steps:
[0048] (1) Pipette 10 mL of oleylamine and 1 mL of oleic acid respectively, put the above substances in the same reactor, stir and mix evenly;
[0049] (2) Weigh 4 mg of platinum (II) acetylacetonate, 20 mg of nickel (II) acetylacetonate and 10 mg of iridium (III) acetylacetonate respectively, put them into the above mixed solution, stir, and dissolve evenly;
[0050] (3) The reactor is first vacuumed and degassed at room temperature, and then filled with argon to 1 atmospheric pressure. The above-mentioned vacuum degassed and argon filled operations are repeated 4 times, and finally the reactor is kept ...
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