A preparation method of a loaded nano copper mesoporous graphite carbon nitride negative electrode material and a material
A technology of graphitic carbon nitride, negative electrode material, applied in nanotechnology, nanotechnology, nanotechnology for materials and surface science, etc. Can not meet and other problems, to achieve the effect of improving high-current charge and discharge performance, enhancing electrical conductivity, and modulating surface chemical properties
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Embodiment 1
[0029] Embodiment 1: This embodiment provides a method for preparing a loaded nano-copper mesoporous graphite carbon nitride negative electrode material, and the supported nano-copper mesoporous graphite carbon nitride negative electrode material prepared by this method, specifically prepared The process includes:
[0030] S1: Put melamine in a crucible with a lid, seal the crucible with tinfoil, put it in a muffle furnace, heat it up to 560°C at a heating rate of 4°C / min, keep it warm for 3 hours, and then cool it naturally to room temperature , to obtain a light yellow block solid material, and finally to obtain powdered g-C by grinding 3 N 4 Material.
[0031] S2: The synthesis method of supported nano-copper mesoporous graphite carbon nitride is as follows: 510mg g-C 3 N 4 Put it into 100mL deionized water, and get g-C by ultrasonic 3 N 4 Dispersion, add 80mg CuCl dropwise to the dispersion 2 and 10 mL of water, and stirred at room temperature for 10 hours. Add 1mo...
Embodiment 2
[0032] Embodiment 2: This embodiment provides a method for preparing a loaded nano-copper mesoporous graphite carbon nitride negative electrode material, and the supported nano-copper mesoporous graphite carbon nitride negative electrode material prepared by this method, specifically prepared The process includes:
[0033] S1: Put melamine in a crucible with a lid, seal the crucible with tinfoil, put it in a muffle furnace, heat it up to 540°C at a heating rate of 3°C / min, keep it warm for 6 hours, and then cool it naturally to room temperature , to obtain a light yellow block solid material, and finally to obtain powdered g-C by grinding 3 N 4 Material.
[0034] S2: The synthesis method of supported nano-copper mesoporous graphite carbon nitride is as follows: 550mg g-C 3 N 4Put it into 120mL deionized water, sonicate to get g-C 3 N 4 Dispersion, add 85mg CuCl dropwise to the dispersion 2 and 5 mL of water, and stirred at room temperature for 9 hours. Add 1 mol / L NaOH...
Embodiment 3
[0035] Embodiment 3: This embodiment provides a method for preparing a loaded nano-copper mesoporous graphite carbon nitride negative electrode material, and the supported nano-copper mesoporous graphite carbon nitride negative electrode material prepared by this method, specifically prepared The process includes:
[0036] S1: Put melamine in a crucible with a lid, seal the crucible with tinfoil, put it in a muffle furnace, heat it up to 570°C at a heating rate of 5°C / min, keep it warm for 6 hours, and then cool it naturally to room temperature , to obtain a light yellow block solid material, and finally to obtain powdered g-C by grinding 3 N 4 Material.
[0037] S2: The synthesis method of supported nano-copper mesoporous graphite carbon nitride is as follows: 550mg g-C 3 N 4 Put it into 100mL deionized water, and get g-C by ultrasonic 3 N 4 Dispersion, add 80mg CuCl dropwise to the dispersion 2 and 10 mL of water, and stirred at room temperature for 11 hours. Add 1mo...
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