Preparing method of tin-nickel-carbon composite cathode material of lithium ion battery
A technology for lithium-ion batteries and negative electrode materials, which is applied in battery electrodes, circuits, electrical components, etc., can solve problems such as difficult application, unstable electrodeposition process specifications, and low carbon content in the coating, achieving low cost and excellent electrochemical performance. , the effect of simple process
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2011-07-27
- Estimated Expiration
- Not applicable · inactive patent
Abstract
Description
technical field
[0001] The invention relates to the technical field of lithium-ion batteries, in particular to a method for preparing a tin-nickel-carbon composite negative electrode material for lithium-ion batteries. Background technique
[0002] Due to the shortage of energy and the increasingly serious urban environmental pollution, it is an urgent social problem that the world is facing to find an alternative energy source that replaces oil, is environmentally friendly and clean, and solves urban air pollution. Advanced electric vehicles are recognized as the future It is the most important way to develop energy-saving, environment-friendly and green transportation. At present, the electric vehicles and hybrid vehicles that are competing to develop in various countries need batteries to provide power. As the supporting power supply of electric vehicles, the outstanding performance of lithium-ion batteries has unique advantages. Positive and negative active materials in...
Examples
Embodiment Construction
[0023] A method for preparing a tin-nickel-carbon composite negative electrode material for a lithium-ion battery of the present invention uses an electrodeposition process to prepare a lithium-ion battery tin-nickel-carbon composite negative electrode material; the electrodeposition process is:
[0024] Process (1): Graphite powder → surface chemical modification treatment → adding pyrophosphate alloy plating solution → ultrasonic dispersion;
[0025] Process (2): copper foil current collector → activation treatment;
[0026] Process (3): The copper foil current collector finally obtained in process (2) is used as a cathode, the hard graphite plate is used as an anode, and the plating solution obtained in process (1) is used as an electrolyte to perform electrodeposition coating, and finally a composite coating is obtained.
[0027] The particle size of graphite powder is 5-12 μm. The graphite is processed by a ball milling method to obtain graphite powder with a particle si...