Supercapacitor flexible film electrode material and preparation method thereof
A technology for supercapacitors and flexible films, applied in the field of supercapacitor flexible film electrode materials and their preparation, can solve the problems of weak bonding between active materials and substrates, high production cost of conductive substrates, uneven dispersion of raw materials, etc., and achieve excellent electrical properties. Chemical properties, saving fiber raw materials, and the effect of large specific capacitance
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Embodiment 1
[0037] A kind of preparation method of supercapacitor flexible film electrode material of the present embodiment
[0038] (1) polyvinyl alcohol (purity greater than 95%) is added to distilled water, and preparation mass concentration is the foaming liquid of 1%, and 30wt% nanocellulose and 70wt% single-layer graphene (model is SE1233, powdery, manufacturer Changzhou Sixth Element) after mixing, add a small amount of distilled water, mix and pour into the foaming liquid (such as figure 1 ).
[0039] (2) The rotating speed of the foaming device is set to 800 rpm, and the foaming time is 30 minutes. After foaming, apply a pressure filter of 9.8Kpa (such as figure 2 ), to obtain a flexible thin film electrode material, the quantitative is 30g / m 2 , with a thickness of 10 μm, and then put the peeled off flexible film electrode material into a blast dryer for drying at a drying temperature of 120° C. to obtain the supercapacitor flexible film electrode material.
Embodiment 2
[0041] Compared with Example 1, the preparation method of a flexible film electrode material for a supercapacitor in this embodiment differs in that the raw materials are 40wt% nanocellulose and 60wt% single-layer graphene, and the other steps are exactly the same.
Embodiment 3
[0043] Compared with Example 1, the preparation method of a flexible film electrode material for a supercapacitor in this embodiment differs in that the raw materials are 50wt% nanocellulose and 50wt% single-layer graphene, and the other steps are exactly the same.
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Abstract
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