Method for preparing nano-titanium dioxide/tungsten trioxide compound material powder
A nano-titanium dioxide and composite material technology, applied in the field of nano-material preparation, can solve the problems of uncontrollable particle size of composite materials, limitation of mass production of composite materials, poor compatibility of two materials, etc., to achieve excellent photocatalytic performance, synergy Excellent photocatalytic performance and process controllable effect
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[0034] A preparation method of nano-titanium dioxide / tungsten trioxide composite material powder, comprising the following steps:
[0035] Step 1. After mixing concentrated nitric acid and distilled water, prepare a dilute nitric acid solution with a concentration of 2-14mol / L, fully stir and mix, and set aside;
[0036] The concentration of dilute nitric acid is limited here, because if its concentration is too high, the reaction of tetrabutyl titanate added later will be insufficient, otherwise, the reaction of ammonium metatungstate will be insufficient.
[0037] Step 2. Add tetrabutyl titanate drop by drop to the dilute nitric acid solution prepared in step 1, and stir while adding dropwise. The stirring rate is 600~1200r / min to obtain solution A. Tetrabutyl titanate in solution A The final concentration of ester is 0.02 ~0.2mol / L;
[0038] In this step, the addition of tetrabutyl titanate needs to be carried out under stirring conditions, because tetrabutyl titanate and ...
Embodiment 1
[0050] A preparation method of nano-titanium dioxide / tungsten trioxide composite material powder, comprising the following steps:
[0051] Step 1, after mixing concentrated nitric acid and distilled water, prepare 500ml of dilute nitric acid solution with a concentration of 2mol / L, fully stir and mix, and set aside;
[0052] Step 2: Take 34g (that is, 0.1mol) tetrabutyl titanate, and at a stirring rate of 1000r / min, add tetrabutyl titanate drop by drop to the prepared product in step 1 by adding it dropwise while stirring. In dilute nitric acid solution, make solution A, standby;
[0053] Step 3: Take 398.1g of ammonium metatungstate and add it to the solution A prepared in step 2, stir to make it completely mixed, and then get solution B for later use;
[0054] Step 4. Transfer the solution B prepared in step 3 to the polytetrafluoroethylene lining of the stainless steel hydrothermal kettle, and then put it into a drying oven for hydrothermal reaction. Control the drying ove...
Embodiment 2
[0061] A preparation method of nano-titanium dioxide / tungsten trioxide composite material powder, comprising the following steps:
[0062] Step 1. After mixing concentrated nitric acid with distilled water, prepare 500ml of dilute nitric acid solution with a concentration of 4mol / L, fully stir and mix, and set aside;
[0063] Step 2. Take 3.4g (that is, 0.01mol) tetrabutyl titanate, and at a stirring rate of 600r / min, add tetrabutyl titanate drop by drop to step 1 to prepare In the dilute nitric acid solution, make solution A, standby;
[0064] Step 3: Take 24.24g of ammonium metatungstate and add it to the solution A prepared in step 2, stir to make it completely mixed, and then get solution B for later use;
[0065] Step 4. Transfer the solution B prepared in step 3 to the polytetrafluoroethylene lining of the stainless steel hydrothermal kettle, and then put it into a drying oven for hydrothermal reaction. Control the drying oven to heat up to 200℃, hydrothermal reaction ...
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