Method for preparing alpha-ferroso-ferric oxide nano-tube by non-template process
A technology of ferric oxide and non-template method, which is applied in the direction of iron oxide, iron oxide/iron hydroxide, nanotechnology, etc., can solve problems such as large-scale production difficulties, increase product cost, and introduce impurities, and achieve expansion Scale, easy production, and the effect of improving purity
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Embodiment 1
[0015] Take 9mmol / L ferric chloride aqueous solution, then add an equal volume of 0.4mmol / L sodium dihydrogen phosphate aqueous solution, stir evenly, transfer to a polytetrafluoroethylene reactor, seal it and put it in a constant temperature oven at 200°C for 18 hours. Then take out the reaction kettle, cool it naturally in the air, separate the red precipitate in the kettle by centrifugation, wash it twice with water, and dry it in the air at 60°C to get alpha-iron sesquioxide (α-Fe 2 o 3 )nanotube.
Embodiment 2
[0017] Take 18mmol / L ferric chloride aqueous solution, then add an equal volume of 0.9mmol / L sodium dihydrogen phosphate aqueous solution, stir evenly, transfer to a polytetrafluoroethylene reactor, seal it and put it in a constant temperature oven at 210°C for 36 hours, Then take out the reaction kettle, cool it naturally in the air, separate the red precipitate in the kettle by centrifugation, wash it with water three times, and dry it in the air at 80°C to get Alpha-iron sesquioxide (α-Fe 2 o 3 )nanotube.
Embodiment 3
[0019] Take 35mmol / L ferric chloride aqueous solution, then add an equal volume of 1.6mmol / L sodium dihydrogen phosphate aqueous solution, stir evenly, transfer to a polytetrafluoroethylene reactor, seal it and put it in a constant temperature oven at 240°C for 45 hours, Then take out the reaction kettle, cool it naturally in the air, separate the red precipitate in the kettle by centrifugation, wash it with water 4 times, and dry it in the air at 70°C to get alpha-iron sesquioxide (α-Fe 2 o 3 )nanotube.
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