A kind of method that solution method prepares metal cobalt
A metal cobalt and solution method technology, applied in the field of material powder preparation, can solve the problems of complex operation, low product purity and high cost, and achieve the effects of low preparation temperature, high product purity and low energy consumption
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Embodiment 1
[0016] Weigh 0.6g of cobalt acetate tetrahydrate and dissolve it in a mixed solution composed of 55mL of ethylene glycol and 5mL of deionized water, stir to make it fully mixed and dissolved, transfer the above solution to a reaction kettle with a volume of 100mL, and put the closed reaction kettle in Preheat the oven to 140°C in advance, and raise the temperature of the oven to 200°C at a rate of 2°C / min, and then keep it at 200°C for 20 hours; after the reaction is completed, the reaction kettle is cooled to room temperature, and the mixture is filtered , washing, and drying to obtain metallic cobalt. The XRD pattern of gained metal cobalt is as figure 1 Shown in (a) among the figures, it can be seen from the figure that the product is metal cobalt of face-centered cubic and hexagonal crystal systems, without diffraction peaks of other impurities; digital photos are as follows figure 1 Shown in (b) and SEM microscopic appearance as figure 1 Shown in (c)-(d).
Embodiment 2
[0018] Weigh 1.3g of cobalt acetate tetrahydrate and dissolve it in a mixed solution composed of 60mL of ethylene glycol and 6.6mL of deionized water, stir to make it fully mixed and dissolved, transfer the above solution to a reaction kettle with a volume of 90mL, and put the closed reaction kettle into into an oven preheated to 150°C in advance, and raise the temperature of the oven to 210°C at a rate of 5°C / min, and then keep it at 210°C for 24 hours; After filtering, washing and drying, metal cobalt is obtained. The XRD pattern of gained metal cobalt is as figure 2 As shown in the figure, it can be seen from the figure that the product is mainly face-centered cubic and a small amount of hexagonal metal cobalt, without diffraction peaks of other impurities; the SEM morphology of the gained metal cobalt is as follows image 3 shown.
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