Process for preparing stable lead zirconate-titanate sol
A lead zirconate titanate, stable technology, applied in the field of preparation of lead zirconate titanate stable sol, can solve the problems of high cost of zirconium alkoxide, complicated experimental operation, etc., and achieve the effect of simple equipment, convenient experimental operation and less time consumption
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Embodiment 1
[0009] The raw material is Pb(Ac) 2 ·3H 2 O(A.R), ZrO(NO 3 ) 2 2H 2 O(A.R), Ti(OC 4 h 9 ) 4 (C.P). Weigh 0.005molPb(Ac) 2 ·3H 2 O and 0.0026molZrO(NO 3 ) 2 2H 2 O, mix two solid reagents and dissolve in a small amount of H 2 In O, let it stand in a sealed state for 3.36h, so that it can be completely dissolved to form a supersaturated solution. Measure 0.0024mol of Ti(OC 4 h 9 ) 4 Soluble in ethylene glycol monomethyl ether (CH 3 OCH 2 CH 2 OH) solvent, wherein the solvent H 2 O:CH 3 OCH 2 CH 2 OH=1:11, after complete dissolution, 0.40ml of acetylacetone was added dropwise to the solution as a stabilizer. Add the above-mentioned Pb and Zr aqueous solutions dropwise to the Ti organic solution under stirring, stop stirring after the dropwise addition, filter, seal and let stand. A beam of white light passing through the obtained liquid can produce obvious Tyndall phenomenon, which proves that Pb(Zr 0.52 Ti 0.48 )O 3 stable sol.
Embodiment 2
[0011] The raw material is Pb(Ac) 2 ·3H 2 O(A.R), ZrO(NO 3 ) 2 2H 2 O(A.R), Ti(OC 4 h 9 ) 4 (C.P). Weigh 0.005molPb(Ac) 2 ·3H 2 O and 0.0025molZrO(NO 3 ) 2 2H 2 O, mix two solid reagents and dissolve in a small amount of H 2 In O, let it stand in a sealed state for 3.15h, so that it can be completely dissolved to form a supersaturated solution. Measure 0.0025mol of Ti(OC 4 h 9 ) 4 Soluble in isopropanol (CH 3 CHOHCH 3 ) solvent, wherein the solvent H 2 O:CH 3 CHOHCH 3 =1:12.5, after the solution is completely dissolved, 0.50ml of acetylacetone is added dropwise to the solution as a stabilizer. Add the above-mentioned Pb and Zr aqueous solutions dropwise to the Ti organic solution under stirring, stop stirring after the dropwise addition, filter, seal and let stand. A beam of white light passing through the obtained liquid can produce obvious Tyndall phenomenon, which proves that Pb(Zr 0.50 Ti 0.50 )O 3 stable sol.
Embodiment 3
[0013] The raw material is Pb(Ac) 2 ·3H 2 O(A.R), ZrO(NO 3 ) 2 2H 2 O(A.R), Ti(OC 4 h 9 ) 4 (C.P). Weigh 0.005molPb(Ac) 2 ·3H 2 O and 0.00265molZrO(NO 3 ) 2 2H 2 O, mix two solid reagents and dissolve in a small amount of H 2 In O, let it stand in a sealed state for 3.38h to make it dissolve completely to form a supersaturated solution. Measure 0.00235mol of Ti(OC 4 h 9 ) 4 Soluble in ethanol (CH 3 CH 2 OH) solvent, wherein the solvent H 2 O:CH 3 CH 2 OH=1:15.9, after complete dissolution, 0.55ml of acetylacetone was added dropwise to the solution as a stabilizer. Add the above-mentioned Pb and Zr aqueous solutions dropwise to the Ti organic solution under stirring, stop stirring after the dropwise addition, filter, seal and let stand. A beam of white light passing through the obtained liquid can produce obvious Tyndall phenomenon, which proves that Pb(Zr 0.53 Ti 0.47 )O 3 stable sol.
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