Nanometer conductive calcium carbonate and its production thereof
A technology of nano-calcium carbonate and nano-calcium carbonate powder, which is applied in the direction of nano-structure manufacturing, calcium carbonate/strontium/barium, nanotechnology, etc., can solve the problems that nano-calcium carbonate does not have electrical conductivity, and the application is not very ideal, so as to eliminate Electrostatic hazard, low cost, cost reduction effect
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specific Embodiment approach 1
[0007] Specific embodiment one: The conductive nano-calcium carbonate of the present embodiment takes nano-calcium carbonate as the nuclei, and under the condition of pH value=1~6, adopts chemical co-precipitation method to form coating tin dioxide doped on the surface of nano-calcium carbonate. A kind of conductive powder precursor of antimony, each component is by weight ratio, CaCO 3 : Sn: Sb = 55-90: 9-40: 1-10; the conductive powder precursor is calcined at 300° C. to 800° C. to obtain conductive nano-calcium carbonate.
[0008] The preparation method of the conductive nano-calcium carbonate of the present embodiment comprises the following steps successively:
[0009] (1) Weigh 1 to 6 grams of polyethylene glycol and dissolve it in 100 ml of deionized water, adjust the pH value to 1 to 2 with hydrochloric acid solution to obtain solution A;
[0010] (2) Weigh tin tetrachloride and antimony trichloride and dissolve them in a hydrochloric acid solution of 1 to 4 mol / L unt...
specific Embodiment approach 2
[0014] Specific embodiment two: the method for preparing conductive nano-calcium carbonate of the present embodiment is:
[0015] Take 3 grams of polyvinyl alcohol and add it to 100ml deionized water to dissolve it, and adjust the pH value=1 with hydrochloric acid solution to obtain solution A; take 48 grams of SnCl 4 ·5H 2 O, 8.2 g SbCl 3 Dissolve 47 grams of 3mol / L hydrochloric acid to obtain solution B, drop solution B into solution A within one hour, and at the same time add NaOH solution dropwise under high-speed stirring to keep the pH value of the mixed solution from 1 to 5 slowly , and the temperature was 60°C to obtain colloidal solution C;
[0016] Add 50 grams of activated nano-calcium carbonate to 100ml of water, adjust the suspension to a pH value of 5-6 with dilute hydrochloric acid or sodium hydroxide aqueous solution, place the suspension in a sand mill for 1-3 hours, and grind the Move the good nano-calcium carbonate dispersion into a four-necked flask, slo...
specific Embodiment approach 3
[0019] Specific embodiment three: the method for preparing conductive nano-calcium carbonate of the present embodiment is:
[0020] Get 5 grams of polyvinyl alcohol and add it to 100 ml of deionized water to dissolve it, and adjust the pH value to 2 with hydrochloric acid solution to obtain solution A; take 104 grams of SnCl 4 ·5H 2 O, 3.8 g SbCl 3 Dissolve 200 grams of 3mol / L hydrochloric acid to obtain solution B, drop solution B into solution A within 25 minutes, and add NaOH solution dropwise under high-speed stirring to keep the pH value of the mixed solution from 2 to 6. At a temperature of 80°C, a colloidal solution C was obtained;
[0021] Add 60 grams of activated nano-calcium carbonate to 100 ml of water, adjust the suspension to pH = 5 with dilute hydrochloric acid or sodium hydroxide aqueous solution, place the suspension in a sand mill for 2 hours, and put the sand-milled nano-calcium carbonate Move the calcium dispersion into a four-necked flask, and slowly ad...
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