17851298. MULTI-FUNCTIONAL SUPPORTED ANODE AND CATHODES simplified abstract (Ford Global Technologies, LLC)

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MULTI-FUNCTIONAL SUPPORTED ANODE AND CATHODES

Organization Name

Ford Global Technologies, LLC

Inventor(s)

Eunsung Lee of Novi MI (US)

Feng Li of Troy MI (US)

Chi Paik of Grosse Ile MI (US)

MULTI-FUNCTIONAL SUPPORTED ANODE AND CATHODES - A simplified explanation of the abstract

This abstract first appeared for US patent application 17851298 titled 'MULTI-FUNCTIONAL SUPPORTED ANODE AND CATHODES

Simplified Explanation

The abstract describes a hybrid positive electrode active material for use in batteries. The material consists of two types of positive electrode active powders, with the first powder having smaller particle size than the second powder. The particles of the second powder are in contact with multiple particles of the first powder.

  • The hybrid positive electrode active material consists of two types of positive electrode active powders.
  • The first positive electrode active powder has smaller particle size than the second positive electrode active powder.
  • Each particle of the second positive electrode active powder is in contact with multiple particles of the first positive electrode active material.

Potential applications of this technology:

  • Battery technology
  • Energy storage systems
  • Electric vehicles
  • Portable electronic devices

Problems solved by this technology:

  • Improves the performance and efficiency of batteries
  • Enhances the energy density and power density of batteries
  • Increases the lifespan and cycle life of batteries

Benefits of this technology:

  • Improved battery performance and efficiency
  • Higher energy density and power density
  • Longer battery lifespan and cycle life


Original Abstract Submitted

A hybrid positive electrode active material includes a first positive electrode active powder and a second positive electrode active powder. Each particle of the second positive electrode active powder contacts a plurality of particles of the first positive electrode active material. Characteristically, the average particle size of the first positive electrode active powder is smaller than the average particle size of the second positive electrode active powder.