Preparation method of nano dysprosium oxide for dielectric ceramic capacitor
A technology of nano-dysprosium oxide and dielectric ceramics, applied in the direction of rare earth metal oxides/hydroxides, lanthanide oxides/hydroxides, etc., can solve problems such as grinding, achieve easy dispersion, reasonable design, and promising application prospects broad effect
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Embodiment 1
[0026] In a 2L three-necked flask, add 0.5L of dysprosium chloride (DyCl 3 ) solution, its dysprosium oxide (Dy 2 o 3 ) conversion concentration is 50g / L, free acid concentration is 0.1mol / L, stirring and heating to 50°C;
[0027] Precipitating agent sodium carbonate (Na 2 CO 3 ) solution, its concentration is 0.5mol / L, is slowly added dropwise in the above-mentioned dysprosium chloride solution, and the dropwise addition time is 1h, and the final pH value of the solution after precipitation is controlled between 6.0-6.5;
[0028] After precipitation, carry out aging treatment, the aging temperature is 50°C, and the aging time is 1h;
[0029] After the aging treatment, the slurry is filtered and washed with warm water at 50-60°C until the conductivity of the filtrate is less than 1 μs / cm;
[0030] The washed filter cake was dried overnight at 110°C and then roasted at a temperature of 700°C for 5 hours;
[0031] After roasting, the oxide product is crushed and sieved to ...
Embodiment 2
[0033] Carry out according to the preparation method described in embodiment 1, difference is to use dysprosium oxide (Dy 2 o 3 ) conversion concentration is 50g / L dysprosium sulfate (Dy 2 (SO 4 ) 3 ) solution as starting material for precipitation reaction.
Embodiment 3
[0035] Carry out according to the preparation method described in embodiment 1, difference is to use dysprosium oxide (Dy 2 o 3 ) conversion concentration of dysprosium nitrate (Dy(NO 3 ) 3 ) solution as starting material for precipitation reaction.
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