A kind of synthetic method of lithium manganese phosphate nanosheet

A technology of lithium manganese phosphate, synthesis method, applied in nanotechnology, nanotechnology, nanotechnology for materials and surface science, etc., can solve the problem of inability to improve the conductivity of materials, dispersion of conductive carbon materials, poor conductivity of pyrolytic carbon, etc. problem, to achieve the effect of good cycle performance, prevention of agglomeration, and strong reduction ability

Active Publication Date: 2018-08-31
SUZHOU DISIFU NEW ENERGY TECH CO LTD
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AI Technical Summary

Problems solved by technology

At present, there are still some problems with the commonly used manganese phosphate lithium carbon composite materials: organic precursors (such as sucrose, citric acid, etc.) pyrolytic carbon can coat the layer more uniformly, but due to the low heat treatment temperature, generally between 600 ° C and 700 ° C ℃, far lower than the graphitization temperature (above 2000 ℃), which makes the conductivity of pyrolytic carbon poor; corresponding to it is graphitized carbon materials, such as acetylene black, carbon nanotubes, graphene, etc. , has high conductivity, and is often used as a conductive additive for electrode materials, but this type of conductive carbon material is often not well dispersed. Compared with pyrolytic carbon, their binding force with active materials is weak, and a large number of agglomerations often occur , can not play a good role in improving the conductivity of the material

Method used

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  • A kind of synthetic method of lithium manganese phosphate nanosheet
  • A kind of synthetic method of lithium manganese phosphate nanosheet
  • A kind of synthetic method of lithium manganese phosphate nanosheet

Examples

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preparation example Construction

[0036] LiMnPO 4 Preparation of / C / RGO

[0037] Weigh 1.26g lithium hydroxide monohydrate (LiOH·H 2 O) be dissolved in 40mL ethylene glycol, be recorded as A liquid; Pipette 1.153g percentage concentration and be 85% phosphoric acid (H 3 PO 4 ) aqueous solution, dissolved in 30mL ethylene glycol, recorded as B liquid; weigh 1.69g manganese sulfate (MnSO 4 ·H 2 O) and 0.6g ascorbic acid are dissolved in 5mL deionized water and 25mL ethylene glycol, and are recorded as C liquid.

[0038] Use a peristaltic pump to slowly drop liquid A into liquid B, and record the obtained white dispersion as liquid D, and stir liquid D at a speed of 300r / min for 20min; then drop liquid C into liquid D, still at a speed of 300r / min Stir for 20min, then transfer to a hydrothermal kettle, raise the temperature to 180°C at a heating rate of 2°C / min, keep it warm for 10h, and then naturally cool to room temperature.

[0039] Use a centrifuge to centrifuge at a rotational speed of 8000r / min, remo...

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Abstract

The invention relates to a synthesis method of lithium manganese phosphate nanosheets double coated with graphene and pyrolytic carbon and serving as a cathode material of a lithium ion secondary battery. The nanosheets are about 20 nm thick. The synthesis method comprises steps as follows: (1) the lithium manganese phosphate nanosheets are prepared with a solvothermal method; (2) the surfaces of the lithium manganese phosphate nanosheets are coated with glycan for amino-functionalization, and glycan-coated and amino-functionalized lithium manganese phosphate nanosheets are obtained; (3) the surfaces of the amino-functionalized lithium manganese phosphate nanosheets are coated with graphene oxide; (4) reduction and calcination are performed, and the lithium manganese phosphate nanosheets double coated with graphene and pyrolytic carbon are obtained. The lithium manganese phosphate nanosheets prepared with the method combine excellent characteristics of uniform coating of pyrolytic carbon and excellent electrical conductivity of graphene, and the electrochemical performance of the double-carbon composite lithium manganese phosphate is ensured.

Description

technical field [0001] The invention belongs to the preparation of lithium-ion battery cathode materials in the field of electrochemical and new energy materials, and specifically relates to a synthesis method of lithium-ion secondary battery cathode material lithium manganese phosphate nanosheets coated with graphene and pyrolytic carbon. Background technique [0002] The progress of society and the continuous growth of people's needs make clean and efficient energy more and more people's attention. Replacing fuel vehicles with electric vehicles has become the key development direction of various countries. Battery technology is the core of the production of electric vehicles and plays a vital role in the development and growth of the electric vehicle industry. [0003] In lithium-ion batteries, the cathode material is an important factor restricting its development. Lithium iron phosphate is a common cathode material for lithium-ion batteries. Due to its low cost, high spe...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M4/36H01M4/583H01M4/62H01M4/58H01M10/0525B82Y30/00B82Y40/00
CPCB82Y30/00B82Y40/00H01M4/366H01M4/5825H01M4/583H01M4/625H01M10/0525Y02E60/10
Inventor 何平马峰周豪慎
Owner SUZHOU DISIFU NEW ENERGY TECH CO LTD
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