Lasagna nano graphene and preparation method and application thereof
A technology of nano-graphene and puff pastry, applied in the field of graphene, can solve the problems of not easy to increase the packing density, insufficient graphene yield, poor structural symmetry, etc., and achieve the effects of easy cost enlargement, small gap and low cost.
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Embodiment 1
[0037] The preparation of thousand-layer cake-shaped nanographene includes the following operations:
[0038] Using nano-flaky kaolin with a thickness of 5 nm, immersed in a 0.1 mol / L glucose aqueous solution for 3 h, filtered, and compacted under a pressure of 40 MPa using a tablet machine.
[0039] The above product was placed in a reactor, and an oxygen-containing gas (the volume fraction of oxygen was 0.5%, the rest was nitrogen) was calcined at 550° C. for 1 h. In the above-mentioned product, the easily decomposable components escape, and the remaining material forms a porous cake-shaped oxide template; then the gas introduced is switched to argon, and a carbon source (C 8 ~C 15 Petroleum hydrocarbons) and carrier gas (a mixture of hydrogen and argon in a volume ratio of 1:0.6). The carbon source space velocity is 1.5g / g / h, the volume ratio of carbon source and carrier gas is 1:0.1, and the carbon source is cracked on the surface of the porous cake template at 1000 °C t...
Embodiment 2
[0045] The preparation of thousand-layer cake-shaped nanographene includes the following operations:
[0046] Use nano-sheet hydrated magnesium carbonate with a thickness of 100 nm, immerse it in a 1 mol / L starch aqueous solution for 3 h, filter it, and use a tablet machine to compact it under a pressure of 5 MPa.
[0047] The above product was placed in a reactor, and an oxygen-containing gas (the volume fraction of oxygen was 100%) was calcined at 200° C. for 0.2 h. The easily decomposable components in the above-mentioned products escape, and the remaining material forms a porous cake-shaped oxide template; then the gas is switched to argon, and a carbon source (C 1 ~C 7 Petroleum hydrocarbons) and carrier gas (mixture of hydrogen and nitrogen, 1:4 by volume). The carbon source space velocity was 0.5 g / g / h, the volume ratio of carbon source and carrier gas was 1:2, and the carbon source was cracked on the surface of the porous cake-like template at 900 °C to generate grap...
Embodiment 3
[0053] The preparation of thousand-layer cake-shaped nanographene includes the following operations:
[0054] The basic magnesium carbonate with a thickness of 20 nm nanosheets was used, immersed in a 0.5 mol / L cellulose aqueous solution for 1 h, filtered, and compacted under a pressure of 25 MPa by a tablet machine.
[0055] The above product is placed in the reactor, and the CO-containing 2 gas (CO 2 The volume fraction is 20%, and the rest is nitrogen) calcined at 950°C for 3h. The easily decomposable components in the above product escape, and the remaining substances form a porous cake-shaped oxide template. Then the gas was switched to argon, and a carbon source (mixture of dichlorobenzene and propylene oxide, mass ratio of 1:1) and carrier gas (mixture of helium and nitrogen, volume ratio of 1:1) were introduced. The carbon source space velocity is 1 g / g / h, the volume ratio of carbon source to carrier gas is 1:0.5, and the carbon source is cracked on the surface of t...
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