18237321. LITHIUM METAL HALIDE-BASED SOLID ELECTROLYTE FOR ALL-SOLID-STATE BATTERY HAVING NEW CRYSTAL STRUCTURE simplified abstract (Kia Corporation)

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LITHIUM METAL HALIDE-BASED SOLID ELECTROLYTE FOR ALL-SOLID-STATE BATTERY HAVING NEW CRYSTAL STRUCTURE

Organization Name

Kia Corporation

Inventor(s)

Yong Jun Jang of Seongnam, Gyeonggi-do (KR)

Seong Hyeon Choi of Hwaseong, Gyeonggi-do (KR)

Sun Ho Choi of Incheon (KR)

Yong Gu Kim of Suwon, Gyeonggi-do (KR)

Sung Man Cho of Gwacheon, Gyeonggi-do (KR)

Sang Uck Lee of Bucheon, Gyeonggi-do (KR)

Byeong Sun Jun of Suwon, Gyeonggi-do (KR)

Ji Hoon Kim of Ansan, Gyeonggi-do (KR)

LITHIUM METAL HALIDE-BASED SOLID ELECTROLYTE FOR ALL-SOLID-STATE BATTERY HAVING NEW CRYSTAL STRUCTURE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18237321 titled 'LITHIUM METAL HALIDE-BASED SOLID ELECTROLYTE FOR ALL-SOLID-STATE BATTERY HAVING NEW CRYSTAL STRUCTURE

Simplified Explanation

The patent application describes a novel lithium metal halide-based solid electrolyte with a unique crystal structure that enhances lithium ion conductivity.

Key Features and Innovation

  • Novel crystal structure
  • Excellent lithium ion conductivity
  • Lithium metal halide-based solid electrolyte

Potential Applications

The technology can be applied in:

  • Lithium-ion batteries
  • Energy storage systems
  • Electric vehicles

Problems Solved

  • Enhanced lithium ion conductivity
  • Improved stability and performance of batteries
  • Potential for safer and more efficient energy storage solutions

Benefits

  • Increased energy efficiency
  • Longer battery life
  • Safer energy storage solutions

Commercial Applications

  • Lithium-ion battery manufacturers
  • Energy storage companies
  • Electric vehicle industry

Questions about Lithium Metal Halide-Based Solid Electrolyte

What are the key advantages of using this novel solid electrolyte in lithium-ion batteries?

The novel crystal structure enhances lithium ion conductivity, leading to improved battery performance and stability.

How does the unique crystal structure of the solid electrolyte contribute to its excellent lithium ion conductivity?

The crystal structure allows for efficient movement of lithium ions, resulting in enhanced conductivity and overall battery performance.


Original Abstract Submitted

Disclosed is a lithium metal halide-based solid electrolyte having a novel crystal structure and excellent lithium ion conductivity.