18234206. ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME simplified abstract (Kia Corporation)
Contents
- 1 ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Questions about All-Solid-State Battery
- 1.11 Original Abstract Submitted
ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME
Organization Name
Inventor(s)
Gyeong Jun Chung of Daejeon (KR)
Seung Hwan Moon of Hwaseong (KR)
Sung Hoo Jung of Changwon (KR)
ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME - A simplified explanation of the abstract
This abstract first appeared for US patent application 18234206 titled 'ANODE ACTIVE MATERIAL LAYER AND ALL-SOLID-STATE BATTERY USING THE SAME
Simplified Explanation
The patent application describes an all-solid-state battery with a high-power generating anode active material layer.
Key Features and Innovation
- All-solid-state battery design
- Anode active material layer capable of high power generation
Potential Applications
The technology could be used in:
- Electric vehicles
- Portable electronics
- Energy storage systems
Problems Solved
- Low power output in traditional batteries
- Safety concerns with liquid electrolytes in batteries
Benefits
- Higher power output
- Enhanced safety due to solid-state design
- Longer lifespan compared to traditional batteries
Commercial Applications
- Electric vehicle industry for improved performance
- Consumer electronics for longer-lasting devices
- Energy storage sector for efficient power storage solutions
Questions about All-Solid-State Battery
1. How does the anode active material layer contribute to high power generation in the battery?
The anode active material layer plays a crucial role in facilitating rapid electron transfer, leading to high power output.
2. What are the potential challenges in scaling up the production of all-solid-state batteries for commercial use?
Scaling up production may face challenges related to cost efficiency, material availability, and manufacturing processes.
Original Abstract Submitted
Disclosed is an all-solid-state battery including an anode active material layer capable of generating high power.