Supercapacitor electrode material and preparation method thereof
A technology for supercapacitors and electrode materials, applied in hybrid capacitor electrodes, chemical instruments and methods, inorganic chemistry, etc., can solve the problems of serious agglomeration, low conductivity, and low specific surface area, and achieve short reaction time, excellent performance, and improved The effect of conductivity
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Embodiment 1
[0034] A method for preparing an electrode material for a supercapacitor, comprising the following steps: (1) adding potassium permanganate and manganese sulfate to deionized water, stirring evenly, heating to 160° C., reacting for 3 hours, centrifuging, washing and drying, and preparing sea urchin nano-sized α-MnO 2 ;
[0035] The mass ratio of described deionized water, potassium permanganate, manganese sulfate is 100:2.1:3.4;
[0036] (2) The sea urchin-like nano-α-MnO 2 Add deionized water, heat to 100°C, and react for 1h to obtain hydroxyl-functionalized sea urchin-like nano-α-MnO 2 ;
[0037] The deionized water and the sea urchin-shaped nano-α-MnO 2 The mass ratio is 1000:7.5;
[0038] (3) Under a nitrogen atmosphere, N,N-dimethylformamide, the hydroxyl-functionalized sea urchin-like nano-α-MnO 2 Mixed with 2-azidoethylamine, heated to 60°C, reacted for 24h, centrifuged, washed with water and dried to prepare azide-functionalized sea urchin-like nano-α-MnO 2 ;
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Embodiment 2
[0044] A preparation method of supercapacitor electrode material, comprising the following steps:
[0045] (1) Potassium permanganate, manganese sulfate, and aluminum sulfate were added to deionized water, stirred evenly, heated to 160°C, reacted for 3 hours, centrifuged, washed with water and dried to prepare sea urchin-like nano-α-MnO 2 ;
[0046] The mass ratio of described deionized water, potassium permanganate, manganese sulfate, aluminum sulfate is 100:2.1:3.4:4.5;
[0047] (2) The sea urchin-like nano-α-MnO 2 Add deionized water, heat to 100°C, and react for 1h to obtain hydroxyl-functionalized sea urchin-like nano-α-MnO 2 ;
[0048] The deionized water and the sea urchin-shaped nano-α-MnO 2 The mass ratio is 1000:7.5;
[0049] (3) Under a nitrogen atmosphere, N,N-dimethylformamide, the hydroxyl-functionalized sea urchin-like nano-α-MnO 2 Mixed with 2-azidoethylamine, heated to 60°C, reacted for 24h, centrifuged, washed with water and dried to prepare azide-funct...
Embodiment 3
[0055] A preparation method of supercapacitor electrode material, comprising the following steps:
[0056] (1) Potassium permanganate, manganese sulfate, and cobalt sulfate were added to deionized water, stirred evenly, heated to 160°C, reacted for 3 hours, centrifuged, washed with water and dried to prepare sea urchin-like nano-α-MnO 2 ;
[0057] The mass ratio of described deionized water, potassium permanganate, manganese sulfate, cobalt sulfate is 100:2.1:3.4:4.5;
[0058] (2) The sea urchin-like nano-α-MnO 2 Add deionized water, heat to 100°C, and react for 1h to obtain hydroxyl-functionalized sea urchin-like nano-α-MnO 2 ;
[0059] The deionized water and the sea urchin-shaped nano-α-MnO 2 The mass ratio is 1000:7.5;
[0060] (3) Under a nitrogen atmosphere, N,N-dimethylformamide, the hydroxyl-functionalized sea urchin-like nano-α-MnO 2 Mixed with 2-azidoethylamine, heated to 60°C, reacted for 24h, centrifuged, washed with water and dried to prepare azide-functiona...
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