Nano composite absorbing material and preparation method thereof
A nano-composite and wave-absorbing material technology, applied in the field of electromagnetics, can solve the problems that wave-absorbing materials cannot achieve stability, acid resistance, oxidation resistance, electromagnetic wave absorption, acid resistance, oxidation resistance, and composite material instability. Good application value, excellent microwave absorption performance, strong acid resistance effect
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Embodiment 1
[0022] Example 1: CoFe 2 o 4 Preparation method of / RGO composite absorbing material
[0023] Such as figure 1 shown, including the following steps:
[0024] Step (1): Preparation of Alkynylated Cobalt Ferrite
[0025] Weigh Fe(NO 3 ) 3 · 9H 2 O and Co(NO 3 ) 2 · 6H 2 O ingredients, dissolve it in a beaker of deionized water, and stir, after it is completely dissolved, add ammonia water and adjust the pH of the solution to 9, transfer the solution to a polytetrafluoroethylene lined reactor, at 180 ° C Keep it warm for 10 hours, wash and freeze-dry after cooling at room temperature to obtain cobalt ferrite nanopowder, such as figure 2 As shown, the average particle size of cobalt ferrite nanoparticles is 10~20nm; according to the mass ratio of cobalt ferrite to polyacrylic acid 3:1, the cobalt ferrite nanoparticles are ultrasonically dispersed in the aqueous solution of polyacrylic acid, and then Stir rapidly at 95°C for 1 hour, then acidify, wash, and freeze-dry; ...
Embodiment 2
[0032] NiFe 2 o 4 , The preparation method of graphene is respectively the same as embodiment 1 step (1), step (2), weighs the alkynylation NiFe by mass ratio 5:1 2 o 4 and graphene azide, the preparation method is the same as the step (3) of Example 1 to obtain NiFe 2 o 4 / RGO composite absorbing material B. The prepared composite material B has a frequency bandwidth of 4.8GHz in which the reflectivity loss value is lower than -10dB within 2~18GHz, and the minimum reflectivity loss value can reach -44dB (5.6GHz).
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