Method for preparing NdNbO4 microwave dielectric ceramic of fergusonite structure by use of wet chemical process
A technology of microwave dielectric ceramics and wet chemistry, applied in the field of NdNbO4 microwave dielectric ceramics with yttrium niobium ore structure, can solve the problems of large particle size of synthetic powder, unfavorable ceramic sintering, low synthesis temperature, etc., and achieve low synthesis temperature, stable and single phase , good dispersion effect
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Embodiment 1
[0039] according to figure 1 Preparation of NdNbO by Wet Chemical Process 4 Ceramic process flow diagram with the following steps:
[0040] 1) prepare the citric acid aqueous solution of Nd ion
[0041] (a) According to NdNbO 4 Stoichiometric ratio of microwave ceramic phases, adjustment of Nd 2 o 3 / Nb 2 o 5 The molar ratio is 1+x / 1 (02 o 3 A total of 10.0941 grams, dissolved in nitric acid, magnetically stirred to form a transparent solution;
[0042] (b) take by weighing 23.0568 grams of citric acid, add in the above-mentioned solution and stir, impel citric acid and Nd ion to form complex, make transparent Nd ion citric acid aqueous solution;
[0043] 2) Prepare the aqueous citric acid solution of Nb ion
[0044] (a) According to NdNbO 4 For the stoichiometric ratio of the microwave ceramic phase, 7.97 grams of niobium oxide were weighed, placed in a ceramic medium reactor, sealed after adding 100ml of hydrofluoric acid, and then subjected to a high temperature...
Embodiment 2
[0054] according to figure 1 Preparation of NdNbO by Wet Chemical Process 4 Ceramic process flow diagram with the following steps:
[0055] 1) prepare the citric acid aqueous solution of Nd ion
[0056] (a) According to NdNbO 4 Stoichiometric ratio of microwave ceramic phases, adjustment of Nd 2 o 3 / Nb 2 o 5 The molar ratio is 1+x / 1 (02 o 3 A total of 15.1411 grams, dissolved in nitric acid, magnetically stirred to form a transparent solution;
[0057] (b) take by weighing 51.8778 grams of citric acid, add in the above-mentioned solution and stir, impel citric acid and Nd ion to form complex, make transparent Nd ion citric acid aqueous solution;
[0058] 2) Prepare the aqueous citric acid solution of Nb ion
[0059] (a) According to NdNbO 4 For the stoichiometric ratio of the microwave ceramic phase, 11.955 grams of niobium oxide were weighed, placed in a ceramic medium reactor, sealed after adding 150 ml of hydrofluoric acid, and then subjected to a high temperat...
Embodiment 3
[0069] according to figure 1 Preparation of NdNbO by Wet Chemical Process 4 Ceramic process flow diagram with the following steps:
[0070] 1) prepare the citric acid aqueous solution of Nd ion
[0071] (a) According to NdNbO 4 Stoichiometric ratio of microwave ceramic phases, adjustment of Nd 2 o 3 / Nb 2 o 5 The molar ratio is 1+x / 1 (02 o 3 A total of 15.1411 grams, dissolved in nitric acid, magnetically stirred to form a transparent solution;
[0072] (b) take by weighing 45.8778 grams of citric acid, add in the above-mentioned solution and stir, impel citric acid and Nd ion to form complex, make transparent Nd ion citric acid aqueous solution;
[0073] 2) Prepare the aqueous citric acid solution of Nb ion
[0074] (a) According to NdNbO 4 For the stoichiometric ratio of the microwave ceramic phase, 11.966 grams of niobium oxide were weighed, placed in a ceramic medium reaction vessel, sealed after adding 150ml of hydrofluoric acid, and then subjected to high-tem...
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