20240088354.LAYERED STRUCTURE OF BATTERY ELECTRODES simplified abstract (apple inc.)
Contents
- 1 LAYERED STRUCTURE OF BATTERY ELECTRODES
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 LAYERED STRUCTURE OF BATTERY ELECTRODES - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Potential Applications
- 1.6 Problems Solved
- 1.7 Benefits
- 1.8 Potential Commercial Applications
- 1.9 Possible Prior Art
- 1.10 Unanswered Questions
- 1.11 Original Abstract Submitted
LAYERED STRUCTURE OF BATTERY ELECTRODES
Organization Name
Inventor(s)
Xiaoyun Yang of San Jose CA (US)
Aaron Smith of Santa Clara CA (US)
Siva Ram Kumar Muthukumar of San Jose CA (US)
Enbang Wang of San Lorenzo CA (US)
Rohit Bedida of Cupertino CA (US)
Xingxing Zhang of Sunnyvale CA (US)
LAYERED STRUCTURE OF BATTERY ELECTRODES - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240088354 titled 'LAYERED STRUCTURE OF BATTERY ELECTRODES
Simplified Explanation
The battery electrode described in the patent application consists of a first metal foil, a second metal foil, and a thermoplastic polymer layer sandwiched between the two metal foils. Additionally, there are first and second coatings adjacent to the first and second metal foils, respectively, with the metal foils positioned between the thermoplastic polymer layer and the coatings.
- The battery electrode includes a first metal foil, a second metal foil, and a thermoplastic polymer layer.
- There are first and second coatings adjacent to the first and second metal foils, respectively.
- The first metal foil is positioned between the thermoplastic polymer layer and the first coating.
- The second metal foil is positioned between the thermoplastic polymer layer and the second coating.
Potential Applications
The technology described in this patent application could be applied in various battery systems, such as lithium-ion batteries, to improve their performance and efficiency.
Problems Solved
1. Enhanced stability and durability of battery electrodes. 2. Improved conductivity and overall battery performance.
Benefits
1. Increased battery lifespan. 2. Enhanced energy storage capacity. 3. Improved safety features in battery systems.
Potential Commercial Applications
Optimizing battery technology for electric vehicles. SEO Optimized Title: "Revolutionizing Battery Technology for Electric Vehicles"
Possible Prior Art
One possible prior art could be the use of different types of coatings and layers in battery electrodes to enhance their performance and longevity.
Unanswered Questions
How does this technology compare to existing battery electrode designs in terms of cost-effectiveness?
Answer: The patent application does not provide specific details on the cost implications of implementing this technology compared to existing designs.
What impact could this technology have on the overall sustainability of battery manufacturing processes?
Answer: The patent application does not address the potential environmental benefits or drawbacks of using this technology in battery production.
Original Abstract Submitted
a battery electrode includes a first metal foil, a second metal foil, and a thermoplastic polymer layer between the first metal foil and the second metal foil. the battery electrode also includes a first coating adjacent to the first metal foil such that the first metal foil is between the thermoplastic polymer layer and the first coating. the battery electrode also includes a second coating adjacent to the second metal foil such that the second metal foil is between the thermoplastic polymer layer and the second coating.
- Apple inc.
- Xiaoyun Yang of San Jose CA (US)
- Aaron Smith of Santa Clara CA (US)
- Wanjie Zhang of Beijing (CN)
- Siva Ram Kumar Muthukumar of San Jose CA (US)
- Kai Yu of Suzhou (CN)
- Enbang Wang of San Lorenzo CA (US)
- Yafeng Chen of Shanghai (CN)
- Rohit Bedida of Cupertino CA (US)
- Xiaoyu Shen of Huzhou (CN)
- Xingxing Zhang of Sunnyvale CA (US)
- H01M4/36
- H01M4/60
- H01M4/66