A kind of preparation method of positive electrode slurry

A positive electrode slurry and specific surface technology, which is applied to battery electrodes, electrical components, circuits, etc., can solve problems such as negative impact on battery performance, difficulty in dispersion, and graphene barriers, and achieve the effects of reducing difficulties, reducing impact, and saving costs

Active Publication Date: 2016-01-13
唐山国轩电池有限公司
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the large specific surface area and strong water absorption performance of graphene itself, when graphene is used in LFP system, it is difficult to disperse and easy to agglomerate, which leads to great obstacles in the application of graphene in lithium-ion batteries.
In the method of dispersing graphene in the traditional lithium-ion battery manufacturing process, dispersants such as PVP are added to help graphene disperse, but the introduction of such dispersants may bring unpredictable performance to the battery. negative impact

Method used

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  • A kind of preparation method of positive electrode slurry

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Embodiment Construction

[0019] figure 1 It is a preparation process of positive electrode slurry, including the following 6 steps:

[0020] (1) Seal the graphene powder and place it in a 150°C oven for 24-48 hours in a vacuum oven, and the moisture content of the tested powder is <500ppm;

[0021] (2) Put the baked graphene into a mixer, infiltrate it with NMP, stir at a low speed for 5-15min to make a graphene wet powder, and the equipment parameters revolve at 10Hz;

[0022] (3) Add the baked positive electrode active materials (LFP, SP, PVDF) into the mixer in turn and pre-mix with the graphene wet powder for 1-2 hours. The parameters of the mixer are: revolution / rotation 10 / 6.6Hz;

[0023] (4) Add NMP, and now the solid content is controlled at about 80-90%, so that the mixed material is in a wet powder state and continues to premix;

[0024] (5) Add NMP to make the premixed material into a dough state, turn on the mixer to knead the mixed material, control the solid content at this time above ...

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Abstract

The invention discloses a preparation method of graphene dry powder for LFP (lithium ferric phosphate) anode paste. The preparation method of graphene dry powder for LFP anode paste comprises the following steps: (1) putting a baked graphene layer into a stirrer, diluting by using NMP (N-methyl pyrrolidinone), and stirring at a low speed till the material is at a wet powder state; (2) adding the baked anode active substances of LFP, SP and PVDF (polyvinylidene fluoride) into the graphene wet powder, and stirring continuously at a low speed for 1-2 hours, thereby preparing anode premix; (3) diluting by using NMP, and stirring the anode premix at a low speed till the anode premix is at a wet powder state and the solid content of the premix is 80%-90%; (4) diluting the premix at the wet powder state by using NMP until the solid content is around 65%, and stirring the premix at a high speed until each component is uniform and dispersive, thereby preparing a mixed material; and (5) beginning to dilute the mixed material when the mixed material generates a pole climbing phenomenon, controlling the solid content of the mixed material to be around 49%, and stirring at a high speed so as to prepare the required paste. The preparation method provided by the invention can effectively disperse graphene and each component of other anode materials without adopting any additive for helping the graphene to disperse, and reduces the influence on the battery performance of substances of the type of additives.

Description

technical field [0001] The invention relates to a preparation method of positive electrode slurry. Background technique [0002] Since its discovery in 2004, graphene has been favored by researchers in the fields of physics and materials. Graphene is a two-dimensional honeycomb lattice structure carbonaceous material composed of a single layer of carbon atoms tightly packed. Although graphene is only one carbon atomic layer thick and is the thinnest known material, it is very strong and hard and is currently the most conductive material known to conduct electricity. Due to its excellent electrical and thermal conductivity, lithium-ion battery processing applications are also starting to look at the use of graphene. However, due to the super large specific surface area and strong water absorption performance of graphene itself, when graphene is used in LFP system, it is difficult to disperse and easy to agglomerate, which leads to great obstacles in the application of graph...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M4/62
CPCH01M4/625Y02E60/10
Inventor 陈萍王晨旭姚汪兵周元周皖岳
Owner 唐山国轩电池有限公司
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