FIELD: distributed energy.
SUBSTANCE: group of inventions relates to portable devices for storing electrical energy with improved energy characteristics, namely to the anode material of the lithium-ion current source and method of its manufacture. At the same time, a mixture of carbothermally synthesized silicon carbide fibres with a diameter of 50 to 300 nm and graphite particles with a particle size of no more than 50 mcm that have not reacted during carbothermal synthesis with a particle size of no more than 50 mcm is used as an anode material, for which the carbothermal reduction of quartz powder with a particle size of no more than 100 mcm is carried out at a temperature of 1550-1650° C for 200-400 min in a CO atmosphere, in which graphite powder with a particle size of not more than 50 mcm acts as a reducing agent, whereas in the resulting material, the mass ratio of graphite and quartz powders is at least 2:5.
EFFECT: increased specific capacity and stability of the lithium-ion current source by reducing the volume expansion of the anode material, which is made from a mixture of graphite and silicon carbide powders.
2 cl, 4 dwg
| Title | Year | Author | Number | 
|---|---|---|---|
| ANODE MATERIAL FOR LITHIUM-ION CURRENT SOURCE | 2023 | 
 | RU2817235C1 | 
| METHOD OF MAKING LITHIUM-ION CURRENT SOURCE WITH ANODE BASED ON SILICON | 2023 | 
 | RU2828331C1 | 
| METHOD FOR PRODUCING ANODE MATERIAL FOR LITHIUM-ION BATTERIES | 2023 | 
 | RU2812230C1 | 
| METHOD TO PRODUCE NANOSTRUCTURED MULTILAYER 3D COMPOSITE MATERIAL FOR NEGATIVE ELECTRODE OF LITHIUM-ION BATTERY, COMPOSITE MATERIAL, NEGATIVE ELECTRODE AND LITHIUM-ION BATTERY | 2011 | 
 | RU2459319C1 | 
| FAST CHARGING OF PRE-LITHIATED SILICON ANODE | 2021 | 
 | RU2827478C1 | 
| METHOD FOR ELECTROLYTIC PRODUCTION OF POWDERS OF ZIRCONIUM SILICIDES IN MOLTEN SALTS | 2023 | 
 | RU2831247C1 | 
| METHOD TO PRODUCE POSITIVE ELECTRODE OF LITHIUM-ION ACCUMULATOR AND LITHIUM-ION ACCUMULATOR | 2013 | 
 | RU2526239C1 | 
| PRINTING LITHIUM COMPOSITIONS FOR FORMATION OF RECHARGEABLE BATTERY ELECTRODES | 2019 | 
 | RU2799803C2 | 
| ANODES FOR LITHIUM-ION BATTERIES CONTAINING PARTICLES OF GRAPHENE CARBON | 2014 | 
 | RU2634689C2 | 
| METHOD FOR PREPARING ANODE PASTE FOR LITHIUM-ION BATTERY, ANODE PASTE, METHOD FOR MANUFACTURE OF ANODE (VARIANTS), ANODE (VARIANTS) AND LITHIUM-ION BATTERY (VARIANTS) | 2020 | 
 | RU2749904C1 | 
Authors
Dates
2023-06-13—Published
2022-11-22—Filed