Phosphated stainless steel material and its preparation method and application
A technology of stainless steel and 304 stainless steel, applied in metal material coating process, solid-state diffusion coating, coating, etc., can solve the problems of high cost, poor phosphating efficiency, and consumption of raw materials
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Embodiment 1
[0025] The area of 2 pieces is 2X 2.3cm respectively 2 The stainless steel 304 material and 100ul phosphorus trichloride were put into a quartz tube, vacuum sealed in a liquid nitrogen environment, and then put into a tube furnace, and calcined at 650 ° C for 1 h to obtain the phosphating stainless steel material. Tested in 1M KOH, the OER performance of the phosphating stainless steel electrode is 100mA / cm 2 Under the current density, the overpotential is only 260mV, and the HER performance is 100mA / cm in 1MKOH 2 Under the current density, the overpotential is only 325mV.
Embodiment 2
[0027] The area of 2 pieces is 2X 2.3cm respectively 2 The stainless steel 304 material and 100ul of phosphorus trichloride were put into a quartz tube, vacuum sealed in a liquid nitrogen environment, and then put into a tube furnace, and calcined at 700 ° C for 1 hour to obtain the phosphating stainless steel material. Tested in 1M KOH, the OER performance of the phosphating stainless steel electrode is 100mA / cm 2 Under current density, the overpotential is only 300mV, and the HER performance is 100mA / cm in 1MKOH 2 Under the current density, the overpotential is only 307mv.
Embodiment 3
[0029] The area of 2 pieces is 2X 2.3cm respectively 2 The stainless steel 304 material and 100ul of phosphorus trichloride were put into a quartz tube, vacuum sealed in a liquid nitrogen environment, and then put into a tube furnace, and calcined at 600 ° C for 1 hour to obtain the phosphating stainless steel material. Tested in 1M KOH, the OER performance of the phosphating stainless steel electrode is 100mA / cm 2 Under current density, the overpotential is only 330mV, and the HER performance is 100mA / cm in 1MKOH 2 Under the current density, the overpotential is only 300mv.
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