Preparation method and application of tremella derived carbon-based magnetic particle loaded wave-absorbing material
A technology of magnetic particles and wave absorbing materials, which is applied in the field of preparation of electromagnetic wave absorbing materials for obtaining tremella-derived carbon-based loaded magnetic substances, can solve the problems of uneven distribution of loaded particles, complicated preparation process, environmental and human hazards, etc. Utilization value, simple process, and the effect of improving the absorbing performance
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Embodiment 1
[0024] A preparation method of tremella-derived carbon-based magnetic particle-loaded wave-absorbing material, comprising the steps of:
[0025] Step 1, weigh 4g white fungus and 2mol / L Fe(NO 3 ) 3 9H 2 O solution, swelling and foaming;
[0026] Step 2, freeze-drying the foamed product obtained in step 1;
[0027] In step 3, the freeze-dried product obtained in step 2 is placed in a tube furnace under a nitrogen environment and heated to 600 degrees, and kept for 1 hour;
[0028] Step 4, after the tube furnace is cooled to room temperature, the porous carbon base can be loaded with Fe 3 o 4 Electromagnetic absorbing material for magnetic substances.
Embodiment 2
[0030] A preparation method of tremella-derived carbon-based magnetic particle-loaded wave-absorbing material, comprising the steps of:
[0031] Step 1, weigh 4g white fungus and 6mol / L Fe(NO 3 ) 3 9H 2 O solution, swelling and foaming;
[0032] Step 2, freeze-drying the foamed product obtained in step 1;
[0033] In step 3, the freeze-dried product obtained in step 2 is placed in a tube furnace under a nitrogen environment and heated to 600 degrees, and kept for 1 hour;
[0034] Step 4, after the tube furnace is cooled to room temperature, the porous carbon base can be loaded with Fe 3 o 4 Electromagnetic absorbing material for magnetic substances.
Embodiment 3
[0036] A preparation method of tremella-derived carbon-based magnetic particle-loaded wave-absorbing material, comprising the steps of:
[0037] Step 1, weigh 4g white fungus and 4mol / L Fe(NO 3 ) 3 9H 2 O solution, swelling and foaming;
[0038] Step 2, freeze-drying the foamed product obtained in step 1;
[0039] Step 3, the freeze-dried product obtained in step 2 is placed in a tube furnace under an argon atmosphere and heated to 700 degrees, and kept for 1 hour;
[0040] Step 4, after the tube furnace is cooled to room temperature, the porous carbon base can support Fe 3 C electromagnetic absorbing material of magnetic substance.
[0041] figure 1 (a), (b), and (c) are the X-ray diffraction patterns of Case 1, Case 2, and Case 3 respectively; it can be seen that Case 1 is porous carbon-based loaded Fe 3 o 4absorbing material; Case 2 is a porous carbon-based loaded Fe 3 o 4 absorbing material; Case 3 is a porous carbon-based loaded Fe 3 C absorbing material.
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