Lithium ion capacitor and its preparation method
A lithium-ion and capacitor technology, applied in the field of lithium-ion capacitors, can solve problems such as limiting the application of lithium-ion capacitors, increasing equipment and process costs, and achieving the effects of saving preparation costs, simplifying processes and equipment, and reducing heat treatment energy consumption
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Embodiment 1
[0040] A lithium ion capacitor of the present invention, the positive electrode material is a porous carbon material, and the negative electrode material is a graphitized carbon material.
[0041] Its preparation method comprises the following steps:
[0042] (1) Preparation of porous carbon materials:
[0043] 1.1, the pore former (ZnCl 2 ) and catalyst (FeCl 3 ) according to the mass ratio of 1:1 mixed to obtain ZnCl 2 / FeCl 3mixture, the ZnCl 2 / FeCl 3 The mixture and the carbon source (chitosan) are mixed in a mass ratio of 0.01:1 to obtain the first mixture.
[0044] 1.2. After grinding the first mixture in step 1.1 with water for 5 minutes, under the protection of inert gas, put it into a tube furnace for heat treatment, specifically: heat up to 110°C at 2°C / min, and heat Insulate for 2 hours; then raise the temperature to 600°C at 2°C / min, and carbonize at 600°C for 2 hours; then raise the temperature to 700°C at 2°C / min, and perform pore-forming treatment at 700...
Embodiment 2
[0054] A lithium ion capacitor of the present invention, the positive electrode material is a porous carbon material, and the negative electrode material is a graphitized carbon material.
[0055] Its preparation method comprises the following steps:
[0056] (1) Preparation of porous carbon materials:
[0057] 1.1, the pore former (SnCl 2 ) and catalyst (NiCl 2 ) according to the mass ratio of 1:1 mixed to obtain SnCl 2 / NiCl 2 mixture, the SnCl 2 / NiCl 2 The mixture is mixed with the carbon source (carboxymethyl chitosan) at a mass ratio of 1:1 to obtain the first mixture.
[0058] 1.2. After grinding the first mixture in step 1.1 with water for 5 minutes, under the protection of inert gas, put it into a tube furnace for heat treatment, specifically: heat up to 110°C at 2°C / min, and heat Insulate for 2 hours; then raise the temperature to 600°C at 2°C / min, and carbonize at 600°C for 2 hours; then raise the temperature to 700°C at 2°C / min, and perform pore-forming trea...
Embodiment 3
[0066] A lithium ion capacitor of the present invention, the positive electrode material is a porous carbon material, and the negative electrode material is a graphitized carbon material.
[0067] Its preparation method comprises the following steps:
[0068] (1) Preparation of porous carbon materials:
[0069] 1.1. Mix the pore forming agent (KOH) and the carbon source (glucose) at a mass ratio of 10:1 to obtain the first mixture.
[0070] 1.2. After grinding the first mixture in step 1.1 with water for 5 minutes, under the protection of inert gas, put it into a tube furnace for heat treatment, specifically: heat up to 110°C at 2°C / min, and heat Insulate for 2 hours; then raise the temperature to 600°C at 2°C / min, and carbonize at 600°C for 2 hours; then raise the temperature to 700°C at 2°C / min, and perform pore-forming treatment at 700°C for 0.5h to obtain the first heat treatment product.
[0071] 1.3. The heat-treated product of step (2) was washed three times with 4 mo...
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