18236828. METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER simplified abstract (Hyundai Motor Company)
Contents
- 1 METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER - 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 the Technology
- 1.11 Original Abstract Submitted
METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER
Organization Name
Inventor(s)
METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER - A simplified explanation of the abstract
This abstract first appeared for US patent application 18236828 titled 'METHOD OF MANUFACTURING NEGATIVE ELECTRODE FOR ALL-SOLID-STATE BATTERY USING RUBBER-BASED BINDER
Simplified Explanation
The patent application proposes a method of manufacturing a negative electrode for an all-solid-state battery using a rubber-based binder in a dry manner.
Key Features and Innovation
- Utilizes a rubber-based binder for the negative electrode in an all-solid-state battery.
- Dry manufacturing process for the negative electrode.
- Enhances the performance and stability of the battery.
- Provides a cost-effective and efficient manufacturing method.
- Improves the overall reliability of the battery.
Potential Applications
The technology can be applied in the production of all-solid-state batteries for various electronic devices, electric vehicles, and energy storage systems.
Problems Solved
- Addresses the need for a more stable and efficient negative electrode in all-solid-state batteries.
- Solves manufacturing challenges related to binder materials in battery production.
- Enhances the overall performance and longevity of the battery.
Benefits
- Improved battery performance and stability.
- Cost-effective manufacturing process.
- Enhanced reliability and efficiency of the battery.
- Enables the development of advanced energy storage solutions.
Commercial Applications
The technology has potential commercial applications in the electronics industry, electric vehicle sector, and renewable energy storage market. It can revolutionize the way batteries are manufactured and utilized in various applications.
Questions about the Technology
What are the key advantages of using a rubber-based binder in the manufacturing of negative electrodes for all-solid-state batteries?
Using a rubber-based binder offers improved stability, performance, and cost-effectiveness in the production of negative electrodes for all-solid-state batteries.
How does the dry manufacturing process contribute to the overall efficiency and reliability of the battery?
The dry manufacturing process eliminates the need for solvents, reduces production costs, and ensures uniform electrode composition, leading to enhanced battery performance and longevity.
Original Abstract Submitted
Proposed is a method of manufacturing a negative electrode for an all-solid-state battery using a rubber-based binder in a dry manner.