A kind of boron, nitrogen co-doped graphene absorbing material and its preparation method and application
A wave absorbing material and graphene technology, applied in the field of wave absorbing materials, can solve the problems of poor impedance matching characteristics, limited attenuation ability, low attenuation factor, etc., and achieve the improvement of electromagnetic attenuation ability, wave absorption performance, and impedance matching characteristics optimization. Effect
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Embodiment 1
[0044] (1) Prepare a 3 mg / mL GO solution using the Hummer method (reference: Preparation of Graphitic Oxide; J.Am.Chem.Soc.1958, 80, 6, 1339); prepare 20 mL of 5 mol / L hydrochloric acid solution, and 2 g of cyanamide was added thereto, and then acidified and stirred for 1 h to obtain a 2 g / mL acid-treated cyanamide solution. Finally, 8ml of 3mg / mL GO solution and 32ml of 2g / mL acid-treated cyanamide were fully stirred for 2h, then transferred to a hydrothermal inner liner (50mL size) and sealed, and hydrothermally reacted at 200°C for 20h. After the reaction, it was centrifuged, washed and freeze-dried for 20 hours (-20°C), and named N-G wave-absorbing material.
[0045] (2) Take 20mg of N-G wave absorbing material and mix well with 2mol / L spectral grade boric acid solution (40mL), transfer it to a hydrothermal lining (specification: 50mL) and seal it, and react hydrothermally at 140°C for 6h. After the reaction, centrifuge, wash and freeze-dry for 20 hours (-20°C) to obtain ...
Embodiment 2
[0049] The preparation steps are basically the same as in Example 1, except that the cyandiamide described in step (1) is replaced by dicyandiamide to obtain a wave-absorbing material named N / B-G-2.
Embodiment 3
[0051] The preparation steps are basically the same as in Example 1, except that the cyanamide described in step (1) is replaced with melamine to obtain a microwave-absorbing material named N / B-G-3.
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