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Graphene/tin oxide composite electrode sheet and preparation method thereof

A tin oxide and composite electrode technology, applied in battery electrodes, battery manufacturing, non-aqueous electrolyte battery electrodes, etc., can solve the problems of complex electrode sheet technology, low initial charge and discharge efficiency, and electrolyte interaction

Active Publication Date: 2015-11-25
OCEANS KING LIGHTING SCI&TECH CO LTD +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] Most commercial lithium-ion battery anode materials use graphite materials, which have obvious disadvantages: lithium dendrites are precipitated; the first charge and discharge efficiency is low; interaction with the electrolyte; there is voltage hysteresis
[0005] The traditional process of preparing electrode sheets is relatively complicated, and the addition of a certain binder increases the equivalent series resistance of the electrode and affects the power density of the battery.

Method used

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  • Graphene/tin oxide composite electrode sheet and preparation method thereof

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preparation example Construction

[0032] The preparation method of the above-mentioned graphene / tin oxide composite electrode sheet of an embodiment, comprises the steps:

[0033] S10, providing or preparing graphite oxide.

[0034] Graphite oxide is obtained by oxidation of natural flake graphite, and the specific steps are:

[0035] Add 0.5g of natural flake graphite with a mesh number of 100 mesh to 500 mesh into 11.5mL of concentrated sulfuric acid at 0°C, then add 1.5g of potassium permanganate, keep the temperature of the mixture below 10°C, stir for 2h, and then After stirring in a water bath for 24 h, 46 mL of deionized water was slowly added in an ice bath. After 15 minutes, add 140mL of deionized water (which contains 2.5mL of 30% hydrogen peroxide), after which the color of the mixture turns bright yellow, and is suction filtered, then washed with 250mL of 10% hydrochloric acid, suction filtered, and finally 60 ℃ vacuum drying for 48h to obtain graphite oxide.

[0036] S20, adding the graphite ox...

Embodiment 1

[0058] (1) Provide 500-mesh natural flake graphite powder, add 0.5g 500-mesh graphite powder to 0°C, 11.5mL concentrated sulfuric acid, then add 1.5g potassium permanganate, keep the temperature of the mixture below 10°C, stir for 2h, then After stirring in a water bath at room temperature for 24 h, 46 mL of deionized water was slowly added in an ice bath. After 15 minutes, add 140mL of deionized water (which contains 2.5mL of 30% hydrogen peroxide), after which the color of the mixture turns bright yellow, and is suction filtered, then washed with 250mL of 10% hydrochloric acid, suction filtered, and finally 60 ℃ vacuum drying for 48h to obtain graphite oxide.

[0059] (2) Mixed solution of graphene oxide and stannous oxide: graphite oxide was added into ethanol and ultrasonically peeled for 0.5 h to obtain a uniformly dispersed graphene oxide solution. According to the mass ratio of graphene obtained by reduction of graphene oxide to stannous oxide is 1:1, stannous oxide is...

Embodiment 2

[0064] (1) Purchase 300-mesh natural flake graphite powder, add 0.5g of 300-mesh graphite powder to 11.5mL of concentrated sulfuric acid at 0°C, then add 1.5g of potassium permanganate, keep the temperature of the mixture below 10°C, stir for 2h, then After stirring in a water bath at room temperature for 24 h, 46 mL of deionized water was slowly added in an ice bath. After 15 minutes, add 140mL of deionized water (which contains 2.5mL of 30% hydrogen peroxide), after which the color of the mixture turns bright yellow, and is suction filtered, then washed with 250mL of 10% hydrochloric acid, suction filtered, and finally 60 ℃ vacuum drying for 48h to obtain graphite oxide.

[0065] (2) Mixed solution of graphene oxide and tin oxide: graphite oxide was added into isopropanol and ultrasonically peeled for 0.8 h to obtain a uniformly dispersed graphene oxide solution. According to the mass ratio of graphene obtained by reducing graphene oxide to tin oxide is 2:1, add tin oxide i...

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Abstract

The invention discloses a graphene / tin oxide combined electrode plate. The combined electrode plate comprises a current collector, and graphene and a tin oxide which are deposited on the surface of the current collector, wherein the tin oxide is dispersed on the laminated structure of the graphene. According to the graphene / tin oxide combined electrode plate, the graphene is directly deposited on the current collector and the tin oxide is dispersed on the laminated structure of the graphene. Compared with a traditional electrode plate added with an adhesive, the graphene / tin oxide combined electrode plate is lower in equivalent series resistance; and the power density of a battery can be effectively increased by use of the graphene / tin oxide combined electrode plate. The invention also provides a preparation method of the graphene / tin oxide combined electrode plate.

Description

【Technical field】 [0001] The invention relates to the field of new materials, in particular to a graphene / tin oxide composite electrode sheet and a preparation method thereof. 【Background technique】 [0002] Since Andre K. Geim (Andre K. Geim) of the University of Manchester in the United Kingdom prepared graphene materials in 2004, it has been widely valued due to its unique structure and photoelectric properties. Single-layer graphite is considered an ideal material due to its large specific surface area, excellent electrical and thermal conductivity, and low thermal expansion coefficient. Graphene not only has a high lithium-intercalation capacity (theoretical capacity: ~700mAh / g, actual capacity: 400-500mAh / g), but also has very good charge-discharge cycle performance. It can be used as negative electrode material in lithium ion capacitors and lithium ion batteries. [0003] Most commercial lithium-ion battery anode materials use graphite materials, which have obvious ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M4/13H01M4/139
CPCY02E60/122Y02P70/54Y02E60/10
Inventor 周明杰吴凤王要兵
Owner OCEANS KING LIGHTING SCI&TECH CO LTD