Patent
National R&D Project Record
The anode material stores the ions generated at the cathode during charging. Also called the
anode active material, it is a key factor determining a battery's capacity, lifespan, and charging speed.
| Year | Project Title |
|---|---|
| 2026 | Development of a 50 kWh-class seawater battery ESS integrating power for refrigerated containers and bow thrusters, addressing global carbon reduction demand |
| 2026 | Development of a 3 Wh-class high-performance seawater battery pouch cell for marine equipment |
| 2026 | Development of a 3 Wh-class high-performance pouch-type seawater battery for marine equipment using high-power anode materials |
| 2026 | Development of a seawater battery pouch cell module delivering 350 mAh/g reversible capacity at a high current density of 10 A/g — Phase 2 |
| 2025 | Development of a seawater battery pouch cell module delivering 350 mAh/g reversible capacity at a high current density of 10 A/g — Phase 1 |
| 2024 | Development of a Na-ion capacitor-based energy storage system (ESS) to handle rapid load fluctuations during navigation and berthing of large vessels |
| 2023 | Development of commercialization technology for a high-capacity tin-carbon composite conductive additive delivering 380 mAh/g reversible capacity |
| 2023 | Development of commercialization technology for carbon nanotubes as secondary battery conductive additives via low-temperature synthesis and purification-free processing |
| 2023 | Development of commercialization technology for high-performance silicon-containing carbon materials to improve energy density in energy storage systems |
| 2022 | Development of manufacturing technology for a high-performance tin-carbon composite conductive additive for lithium-ion batteries with reversible capacity above 380 mAh/g |
| 2022 | Development of high-power anode materials for sodium secondary batteries (sodium-ion batteries, seawater batteries) |
| 2021 | Manufacture of secondary battery conductive additives through waste soot recycling |
| 2021 | Development of commercialization technology for sodium-ion battery anode materials using solution plasma (2) |
| 2021 | Development of commercialization technology for sodium-ion battery anode materials using solution plasma (1) |
| 2021 | Development of commercialization technology for a high-performance silicon-carbon composite with energy capacity more than 10% above commercial lithium-ion battery conductive additives |