Preparation for binary magnetic fluid
A magnetic liquid and liquid technology, applied in the field of materials, can solve the problems of the quality reduction of magnetic liquid
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example 1
[0049] Example 1. CoFe 2 o 4 —p-NiFe 2 o 4 Preparation of Binary Magnetic Liquid
[0050]Step 1: CoFe 2 o 4 Magnetic liquid (A liquid) and p-NiFe 2 o 4 Preparation of Paramagnetic Liquid (B Liquid).
[0051] (1) Prepare ferrimagnetic CoFe by co-precipitation method 2 o 4 nanoparticles, and then synthesize φ A = 1.2% CoFe 2 o 4 Magnetic liquid mother liquor, its Q A = 0.16.
[0052] (2) Prepare paramagnetic Ni(OH) by co-precipitation method 2 2Fe(OH) 3 Nanoparticles (because of Ni(OH) 2 2Fe(OH) 3 is the preparation of NiFe 2 o 4 material precursors. Therefore Ni(OH) 2 2Fe(OH) 3 Nanoparticles are abbreviated as p-NiFe 2 o 4 nanoparticles). Then synthesize φ B = 1.2% virgin p-NiFe 2 o 4 Paramagnetic liquid mother liquor, its Q B = 0.16.
[0053] Step 2: Take V A =V B The A and B mother liquors are mixed to obtain a binary magnetic liquid containing A and B particles. its φ AB and φ AB,A , φ AB,B for:
[0054] φ AB = 1.2%
example 2
[0055] φ AB,A = φ AB,B =0.6% Example 2. γ-Fe 2 o 3 —p-MgFe 2 o 4 Preparation of Binary Magnetic Liquid
[0056] Step 1: γ-Fe 2 o 3 Magnetic liquid (A liquid) and p-MgFe 2 o 4 Preparation of Paramagnetic Liquid (B Liquid).
[0057] (1) Preparation of ferrimagnetic γ-Fe by co-precipitation method 2 o 3 nanoparticles, and then synthesize φ A = 2% γ-Fe 2 o 3 Magnetic liquid mother liquor, its Q A = 0.14.
[0058] (2) Prepare paramagnetic Mg(OH) by co-precipitation method 2 2Fe(OH) 3 Nanoparticles (due to Mg(OH) 2 2Fe(OH) 3 is the preparation of MgFe 2 o 4 The precursor of the substance, so the Mg(OH) 2 2Fe(OH) 3 Nanoparticles are abbreviated as p-MgFe 2 o 4 nanoparticles). Then synthesize φ B = 2% p-MgFe 2 o 4 Paramagnetic liquid mother liquor, its Q B = 0.16.
[0059] The second step: Dilute A mother liquor into φ A ′ = 1.0 % The secondary A mother liquor, dilute...
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