A kind of preparation method of double perovskite magnetoresistance film
A double perovskite and magnetoresistance technology, which is applied in the fields of magnetic field controlled resistors, electromagnetic device manufacturing/processing, electrolytic coating, etc., can solve the difficulty of preparing high-quality thin films that are not suitable for large-scale industrial production, pulsed laser Expensive equipment and other issues, to achieve the effect of easy control of growth conditions, simple method, and high Curie temperature
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Embodiment 1
[0041] Sr described in this example 2 FeMoO 6 The parent material was prepared as follows:
[0042] a. SrCO 3 , Fe 2 o 3 、MoO 3 The powder is pretreated in a muffle furnace at 300°C for 3 hours;
[0043] b. The pretreated SrCO 3 , Fe 2 o 3 and MoO 3 Mix evenly according to the mass ratio of 0.3413:0.0923:0.1664 and grind to a particle size of ≤70 μm, and place it in a muffle furnace for calcination at 900°C for 10 hours;
[0044] c. Grind the material obtained in step b to a particle size ≤ 40 μm, press into tablets, and use 5% volume fraction of H at 1280° C. 2 Sintering in a mixed flow atmosphere with 95% Ar by volume for 3 hours, and detecting the quality of the sample with a polycrystalline X-ray powder diffractometer;
[0045] When the sample is a single phase, the Sr 2 FeMoO 6 ;
[0046] When the sample contains an impurity phase, repeat the grinding, pressing, sintering, and detection steps in step c until the sample is a single phase, that is, Sr 2 FeMoO...
Embodiment 2
[0066] The Ba described in this example 2 FeMoO 6 The parent material was prepared as follows:
[0067] a. BaCO 3 , Fe 2 o 3 、MoO 3 The powder was pretreated in a muffle furnace at 250°C for 4 hours;
[0068] b. The pretreated BaCO 3 , Fe 2 o 3 and MoO 3 Mix evenly according to the mass ratio of 1.5954:0.3227:0.5819 and grind to a particle size of ≤60 μm, and place it in a muffle furnace for calcination at 900°C for 12 hours;
[0069] c. Grind the material obtained in step b to a particle size ≤ 40 μm, press into tablets, and use 5% volume fraction of H at 1230° C. 2 Sintering in a mixed flow atmosphere with 95% Ar by volume for 3 hours, and detecting the quality of the sample with a polycrystalline X-ray powder diffractometer;
[0070] When the sample is a single phase, Ba 2 FeMoO 6 ;
[0071] When the sample contains an impurity, repeat the steps of grinding, pressing, sintering, and detection in step c until the sample is a single phase, that is, Ba 2 FeMoO ...
Embodiment 3
[0075] Ca described in this example 2 FeMoO 6 The parent material was prepared as follows:
[0076] a. CaCO 3 , Fe 2 o 3 、MoO 3 The powder is pretreated in a muffle furnace at 350°C for 2 hours;
[0077] b. The pretreated CaCO 3 , Fe 2 o 3 and MoO 3 According to the mass ratio of 1.1803:0.4708:0.8489, mix evenly and grind to a particle size of ≤60 μm, and place it in a muffle furnace for calcination at 1000°C for 8 hours;
[0078] c. Grind the material obtained in step b to a particle size ≤ 40 μm, press into tablets, and use 5% volume fraction of H at 1250° C. 2 Sintering in a mixed flow atmosphere with 95% Ar by volume for 3 hours, and detecting the quality of the sample with a polycrystalline X-ray powder diffractometer;
[0079] When the sample is a single phase, the Ca 2 FeMoO 6 ;
[0080] When the sample contains an impurity phase, repeat the grinding, pressing, sintering, and detection steps in step c until the sample detection result is a single phase, th...
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