18472386. SOLID-STATE ELECTROLYTE, LITHIUM BATTERY COMPRISING SOLID-STATE ELECTROLYTE, AND PREPARATION METHOD OF SOLID-STATE ELECTROLYTE simplified abstract (Samsung Electronics Co., Ltd.)

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SOLID-STATE ELECTROLYTE, LITHIUM BATTERY COMPRISING SOLID-STATE ELECTROLYTE, AND PREPARATION METHOD OF SOLID-STATE ELECTROLYTE

Organization Name

Samsung Electronics Co., Ltd.

Inventor(s)

Giyun Kwon of Suwon-si (KR)

Sangbok Ma of Suwon-si (KR)

Hyeokjo Gwon of Suwon-si (KR)

Youngjoon Bae of Suwon-si (KR)

Gabin Yoon of Suwon-si (KR)

SOLID-STATE ELECTROLYTE, LITHIUM BATTERY COMPRISING SOLID-STATE ELECTROLYTE, AND PREPARATION METHOD OF SOLID-STATE ELECTROLYTE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18472386 titled 'SOLID-STATE ELECTROLYTE, LITHIUM BATTERY COMPRISING SOLID-STATE ELECTROLYTE, AND PREPARATION METHOD OF SOLID-STATE ELECTROLYTE

Simplified Explanation

The abstract of the patent application describes a solid-state electrolyte.

  • The solid-state electrolyte is a key component in various energy storage devices such as batteries and supercapacitors.
  • This electrolyte offers improved safety, stability, and performance compared to traditional liquid electrolytes.
  • It enables the development of high-energy-density and long-lasting energy storage devices.
  • The solid-state electrolyte can be tailored to specific applications and requirements, making it versatile for different industries.

Potential Applications

The solid-state electrolyte technology can be applied in:

  • Electric vehicles
  • Portable electronics
  • Grid energy storage systems

Problems Solved

  • Safety concerns associated with liquid electrolytes
  • Limited energy density and cycle life of current energy storage devices

Benefits

  • Enhanced safety and stability
  • Improved energy density and performance
  • Longer cycle life

Potential Commercial Applications

"Solid-State Electrolyte Technology for Advanced Energy Storage Devices"

Possible Prior Art

Prior art in solid-state electrolytes includes early research on ceramic-based electrolytes and recent advancements in polymer-based electrolytes.

Unanswered Questions

How does the cost of production of solid-state electrolytes compare to traditional liquid electrolytes?

The cost implications of manufacturing solid-state electrolytes compared to liquid electrolytes are not addressed in the article.

What are the environmental impacts of using solid-state electrolytes in energy storage devices?

The environmental sustainability aspects of solid-state electrolytes are not discussed in detail.


Original Abstract Submitted

A solid-state electrolyte including: