A kind of ptpd electrocatalyst for fuel cell and preparation method thereof
An electrocatalyst and fuel cell technology, applied in battery electrodes, circuits, electrical components, etc., can solve the problems of low reserves, high cost, and restrictions on the commercialization of fuel cells, and achieve large applications and development prospects, short synthesis time, The effect of excellent performance in electrocatalytic oxidation of methanol
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Embodiment 1
[0029] (1) Take 1.0 g of triblock copolymer P123 and dissolve it in 30 mL of double-distilled water by ultrasonic stirring, transfer it to a three-necked bottle and stir it on a magnetic stirrer with a temperature controller, and control the temperature at 30 ℃.
[0030] (2) Slowly add 10 mL of K to the P123 solution dropwise 2 PdCl 4 solution (0.02mmol / L), after the dropwise addition was completed, immediately continue to add 10 mL of K 2 PtCl 6 Solution (0.02mmol / L), magnetic stirring reaction 2h.
[0031] (3) Naturally cool to room temperature, centrifuge the black suspension obtained after the reaction at 10,000 r / min, wash twice with twice distilled water, then wash three times with absolute ethanol, and finally wash the The product is added into absolute ethanol for dispersion protection to obtain a PtPd-1 electrocatalyst for fuel cells.
[0032] figure 1 Shown is the transmission electron microscope (TEM) figure of the PtPd-1 electrocatalyst for fuel cell prepar...
Embodiment 2
[0036] (1) Take 1.0 g triblock copolymer P123 and dissolve it in 30 mL double-distilled water with ultrasonic stirring, transfer it to a three-necked bottle and place it on a magnetic stirrer with a temperature controller to stir, and control the temperature at 30 ℃.
[0037] (2) Slowly add 10 mL of K to the P123 solution dropwise 2 PdCl 4 (0.02mmol / L) and 10 mL K 2 PtCl 6 Solution (0.02mmol / L) mixed solution, magnetic stirring reaction 2h.
[0038] (3) Naturally cool to room temperature, centrifuge the black suspension obtained after the reaction at 10,000 r / min, wash twice with twice distilled water, then wash three times with absolute ethanol, and finally wash the The product is added into anhydrous ethanol for dispersion protection to obtain a PtPd-2 electrocatalyst for fuel cells.
[0039] figure 2 Shown is the transmission electron microscope (TEM) figure of the PtPd-2 electrocatalyst for the fuel cell prepared by the present embodiment, by figure 2 a It can ...
Embodiment 3
[0043] (1) Take 1.0 g triblock copolymer P123 and dissolve it in 30 mL double-distilled water by ultrasonic stirring, transfer it to a three-necked bottle and place it on a magnetic stirrer with a temperature controller to stir, and control the temperature at 100 ℃.
[0044] (2) Slowly add 10 mL of K to the P123 solution dropwise 2 PdCl 4 (0.02mmol / L) and 10 mL K 2 PtCl 6 Solution (0.02mmol / L) mixed solution, magnetic stirring reaction 2h.
[0045] (3) Naturally cool to room temperature, centrifuge the black suspension obtained after the reaction at 10,000 r / min, wash twice with twice distilled water, then wash three times with absolute ethanol, and finally wash the The product is added into absolute ethanol for dispersion protection to obtain a PtPd-100 electrocatalyst for fuel cells.
[0046] image 3 Shown is the transmission electron microscope (TEM) figure of the PtPd-100 electrocatalyst for fuel cell prepared by the present embodiment, by image 3 a It can be s...
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