Magnetic hud fine particles possessing strong magnetic field response capability and its preparing method
A technology with responsiveness and strong magnetic field, which is applied in the direction of magnetic objects, magnetic materials, inductors/transformers/magnets, etc., can solve the problems of weak particle magnetism, weak external magnetic field response ability, and small number of magnetic cores, etc., to achieve the content of magnetic substances High, strong external magnetic field response capability, low equipment requirements
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Embodiment 1
[0019] Example 1: Fe 3 o 4 Preparation of nanoparticles
[0020] Weigh 27.45g of FeCl3 ·6H 2 O and 10.10 g FeCl 2 4H 2 O was dissolved in 100ml of water through nitrogen and deoxygenation to obtain a mixed solution. Take 400ml of water in a 1L round-bottomed flask to pass through nitrogen to remove oxygen, add 25ml of concentrated ammonia water with a mass percentage concentration of 25-28%, and quickly pour the above-mentioned iron salt mixed solution into it under vigorous stirring. Reaction 1h. After the reaction is completed, use a 0.1T permanent magnet to separate the black solid from the reaction solution, and wash the obtained solid with high-purity water for 3 to 5 times to obtain Fe with a particle size of 6 to 10 nm. 3 o 4 Nanoparticles.
Embodiment 2
[0021] Example 2: γ-Fe 2 o 3 Preparation of nanoparticles
[0022] Weigh 27.45g of FeCl 3 ·6H 2 O and 10.10 g FeCl 2 4H 2 O was dissolved in 100ml of water through nitrogen and deoxygenation to obtain a mixed solution. Take 400ml of water in a 1L round-bottomed flask to pass through nitrogen to remove oxygen, add 25ml of concentrated ammonia water with a mass percentage concentration of 25-28%, and quickly pour the above-mentioned iron salt mixed solution into it under vigorous stirring. Reaction 1h. Oxygen was then introduced into the reaction solution for 2 h. After the reaction is completed, use a 0.1T permanent magnet to separate the red solid from the reaction solution, and wash the obtained solid with high-purity water for 3 to 5 times to obtain γ-Fe with a particle size of 6 to 10 nm. 2 o 3 Nanoparticles.
Embodiment 3
[0023] Example 3: CoFe 2 o 4 Preparation of nanoparticles
[0024] Weigh 27.86g of CoCl 3 ·6H 2 O and 10.10 g FeCl 2 4H 2 O was dissolved in 100ml of water through nitrogen and deoxygenation to obtain a mixed solution. Take 400ml of water in a 1L round-bottomed flask, pass nitrogen to remove oxygen, add 25ml of concentrated ammonia water with a concentration of 25-28% by mass, quickly pour the above mixed salt solution into it under vigorous stirring, and react at 50°C 1h. After the reaction is completed, use a 0.1T permanent magnet to separate the black solid from the reaction solution, and wash the obtained solid with high-purity water for 3 to 5 times to obtain CoFe with a particle size of 3 to 13 nm. 2 o 4 Nanoparticles.
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