Copper pyrovanadate/nitrogen-doped graphene composite material and preparation method and application thereof
A technology of nitrogen-doped graphene and composite materials, which is applied in the field of nanomaterials, can solve the problems of electrode electrochemical instability, low first-time Coulombic efficiency, and fast capacity decay, so as to prevent volume expansion/shrinkage and aggregation, and the preparation method is simple Efficient and prevents performance degradation
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Embodiment 1
[0039] This embodiment provides a copper pyrovanadate / nitrogen-doped graphene composite material and a preparation method of the copper pyrovanadate / nitrogen-doped graphene composite material.
[0040] The copper pyrovanadate / nitrogen-doped graphene composite material described in this embodiment includes graphene and copper pyrovanadate grown on the surface of graphene, has a three-dimensional mesoporous structure, and the specific preparation steps are as follows:
[0041] (1) Preparation of graphene oxide (GO): place the flask in an ice bath, mix 5g of graphite powder with 180mL of concentrated sulfuric acid (98wt.% H 2 SO 4 ) into the flask, and kept stirring, so that the graphite powder was completely dispersed in the concentrated sulfuric acid solution. Then slowly add 2.5g NaNO to the flask 3 and 20g KMnO 4, keep the ice-water bath environment during this feeding process, and continue to stir for 1h. Thereafter, the flask was transferred to an oil bath, and the temp...
Embodiment 2
[0049] This embodiment provides a copper pyrovanadate / nitrogen-doped graphene composite material and a preparation method of the copper pyrovanadate / nitrogen-doped graphene composite material.
[0050] The copper pyrovanadate / nitrogen-doped graphene composite material described in this embodiment includes graphene and copper pyrovanadate grown on the surface of graphene, has a three-dimensional mesoporous structure, and the specific preparation steps are as follows:
[0051] (1) Preparation of graphene oxide (GO): place the flask in an ice bath, mix 5g of graphite powder with 180mL of concentrated sulfuric acid (98wt.% H 2 SO 4 ) into the flask, and kept stirring, so that the graphite powder was completely dispersed in the concentrated sulfuric acid solution. Then slowly add 2.5g NaNO to the flask 3 and 20g KMnO 4 , keep the ice-water bath environment during this feeding process, and continue to stir for 1h. Thereafter, the flask was transferred to an oil bath, and the tem...
Embodiment 3
[0055] This embodiment provides a copper pyrovanadate / nitrogen-doped graphene composite material and a preparation method of the copper pyrovanadate / nitrogen-doped graphene composite material.
[0056] The copper pyrovanadate / nitrogen-doped graphene composite material described in this embodiment includes graphene and copper pyrovanadate grown on the surface of graphene, has a three-dimensional mesoporous structure, and the specific preparation steps are as follows:
[0057] (1) Preparation of graphene oxide (GO): place the flask in an ice bath, mix 5g of graphite powder with 180mL of concentrated sulfuric acid (98wt.% H 2 SO 4 ) into the flask, and kept stirring, so that the graphite powder was completely dispersed in the concentrated sulfuric acid solution. Then slowly add 2.5g NaNO to the flask 3 and 20g KMnO 4 , keep the ice-water bath environment during this feeding process, and continue to stir for 1h. Thereafter, the flask was transferred to an oil bath, and the tem...
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