Method for preparing MnZn ferrite
A technology of ferrite and iron salt, which is applied in the field of preparing MnZn ferrite, can solve the problems of uneven microstructure of sintered body, small nanoparticles and easy agglomeration, and low density of green body, so as to improve the density of green body and facilitate dispersion properties and fluidity, the effect of reducing particle agglomeration
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Embodiment 1
[0038] Embodiment 1: The concrete steps of this embodiment are as follows:
[0039] The first step is to prepare MnZn ferrite nanopowder
[0040] Step 1: Weigh 27.802g of ferrous sulfate (0.1mol iron), dissolve it in 150ml of deionized water, and place it in a 500ml beaker for magnetic stirring (stirring speed 300 rpm). Measure 100ml of ammonium bicarbonate (concentration of 0.5mol / L) and 100ml of dilute ammonia water (concentration of 5wt%) with a measuring cylinder, pour them into a separatory funnel and mix them evenly, and slowly add dropwise (dropwise) to the ferrous sulfate solution through the separatory funnel. The time is 1.5h), and the precipitation of ferrous particles is carried out. At this time, the pH value of the ferrous sulfate solution is adjusted to 7.2, and the ferrous ions are completely precipitated.
[0041] Step 2: Measure 4.2mL H with a graduated cylinder 2 O 2 The solution was added to the suspension obtained in the first step to convert the ferrou...
Embodiment 2
[0052] The first step is to prepare MnZn ferrite nanopowder
[0053] Other steps are the same as in Example 1, except that the nominal chemical formula of the obtained MnZn ferrite nano-powder is Mn 0.7 Zn 0.2 Fe 2.1 O 4 . (0.1mol iron, 0.0095mol zinc, 0.0333mol manganese)
[0054] The second step is to introduce the coupling agent
[0055] Weigh 10 grams of MnZn ferrite nano powder, then weigh 0.014g TC-114 according to the mass of silicon element as 0.02% of the mass of the nano powder, and weigh 0.012g KH-151 according to the mass of titanium element as 0.04% of the mass of the powder, First, the two coupling agents were ultrasonically dispersed with 40 mL of anhydrous ethanol for 20 min, then the weighed nano-powder was added, ultrasonicated and stirred for 2 h, and dried at 80°C for 2 h to obtain the coated modified nano-powder.
[0056] The third step, adding binder molding
[0057] Add polyvinyl butyral (PVB) to the powder obtained in the second step, the amount ...
Embodiment 3
[0061] The first step is to prepare MnZn ferrite nanobodies
[0062] Step 1: Weigh 27.083g of ferrous chloride (0.1mol iron), dissolve it in 150mL of deionized water, and place it in a 500mL beaker for magnetic stirring (stirring speed 300 rpm / min). Measure 100mL of ammonium bicarbonate (concentration of 0.5mol / L) and 100mL of dilute ammonia water (concentration of 5wt%) with a graduated cylinder, pour them into a separating funnel and mix them evenly, and slowly add them into the ferrous sulfate solution dropwise through the separating funnel (dropwise addition). The time is 1.0h), and the precipitation of ferrous particles is carried out. At this time, the pH value of the ferrous sulfate solution is adjusted to 7.8, and the ferrous ions are completely precipitated.
[0063] Step 2: Measure 5.6mL H with a graduated cylinder 2 O 2The solution was added to the suspension obtained in the first step to convert the ferrous precipitation into the precursor δ-FeOOH, and the reacti...
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