Flexible nano-porous/amorphous composite material for hydrogen production by electrolyzing water and preparation method thereof
An amorphous composite material, nanoporous technology, applied in the direction of electrode shape/type, electrode, electrolysis process, etc., can solve the problems of insufficient catalytic activity and low specific surface area of the strip, and achieve good mechanical bending flexibility and simple preparation process Effect
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Embodiment 1
[0031] With Ni 40 Zr 40 Ti 20-x Pt x (x=0, x=1, x=2, x=3 and x=4) are used as the nominal composition of the precursor alloy, and the required elements are weighed and proportioned, and the pure elements (Ni 99.99 wt%, Zr 99.99wt%, Pt99.99wt%), converted into mass (5g) according to the atomic percentage of the alloy and weighed, and then adopting the method of high-purity argon atmosphere vacuum arc melting to obtain Ni 40 Zr 40 Ti 20-x Pt x(x=0, x=1, x=2, x=3 and x=4) master alloy button ingots are smelted for 3 to 4 times to ensure uniform composition of the master alloy ingots.
[0032] Ni 40 Zr 40 Ti 20-x Pt x (x=0, x=1, x=2, x=3 and x=4) the alloy ingot is heated and melted by induction, and then the molten metal liquid rises slowly so that it touches the tip of the high-speed rotating water-cooled copper roller, and the metal liquid is Rapidly flung out and rapidly cooled to prepare Ni 40 Zr 40 Ti 20-x Pt x (x=0, x=1, x=2, x=3 and x=4) alloy wires, the dia...
Embodiment 2
[0034] With Ni 40 Zr 40 Ti 20-x Pt x (x=0, x=1, x=2, x=3 and x=4) are used as the nominal composition of the precursor alloy, and the required elements are weighed and proportioned, and the pure elements (Ni 99.99 wt%, Zr 99.99wt%, Pt99.99wt%), converted into mass (5g) according to the atomic percentage of the alloy, and then adopting the method of high-purity argon atmosphere vacuum arc melting to obtain Ni with different precious metal contents 40 Zr 40 Ti 20-x Pt x (x=1, x=2, x=3 and x=4) master alloy button ingots are smelted 3 to 4 times to ensure uniform composition of the master alloy ingots.
[0035] The master alloy ingot is re-melted by induction heating with a medium-frequency power supply using a vacuum stripping device, and is continuously and rapidly sprayed onto a water-cooled rotating copper roller under the action of high-purity argon with a pressure of about 0.2MPa to prepare Ni 40 Zr 40 Ti 20-x Pt x (x=0, x=1, x=2, x=3 and x=4) thin alloy strips, t...
Embodiment 3
[0038] With Ni 40 Zr 40 Ti 20-x Au x (x=1, x=2, x=3 and x=4) are used as the nominal composition of the precursor alloy, and the required elements are weighed and proportioned, and the pure elements (Ni 99.99wt%, Zr 99.99wt%, Au99.99wt%), converted into mass (5g) according to the atomic percentage of the alloy, and then adopting the method of high-purity argon atmosphere vacuum arc melting to obtain Ni with different precious metal contents 40 Zr 40 Ti 20-x Au x (x=1, x=2, x=3 and x=4) master alloy button ingots are smelted 3 to 4 times to ensure uniform composition of the master alloy ingots.
[0039] The master alloy ingot is re-melted by induction heating with a medium-frequency power supply using a vacuum stripping device, and is continuously and rapidly sprayed onto a water-cooled rotating copper roller under the action of high-purity argon with a pressure of about 0.2MPa to prepare Ni 40 Zr 40 Ti 20-x Pt x (x=1, x=2, x=3 and x=4) thin alloy strips, the thicknes...
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