18416624. ELECTROCHEMICAL CELL, CURRENT COLLECTOR, AND CELL STACK simplified abstract (KABUSHIKI KAISHA TOSHIBA)

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ELECTROCHEMICAL CELL, CURRENT COLLECTOR, AND CELL STACK

Organization Name

KABUSHIKI KAISHA TOSHIBA

Inventor(s)

Takahiro Ono of Tokyo (JP)

Masato Yoshino of Yokohama (JP)

Kentaro Matsunaga of Tokyo (JP)

Norikazu Osada of Tokyo (JP)

ELECTROCHEMICAL CELL, CURRENT COLLECTOR, AND CELL STACK - A simplified explanation of the abstract

This abstract first appeared for US patent application 18416624 titled 'ELECTROCHEMICAL CELL, CURRENT COLLECTOR, AND CELL STACK

Simplified Explanation: The patent application describes an electrochemical cell with a unique gas-flow suppression part to improve its performance.

Key Features and Innovation:

  • Electrochemical cell with an electrode layered body, cathode, and anode.
  • Gas-flow suppression part adjacent to the electrode layered body.
  • Gas-flow suppression part made from a material different from the electrolyte, cathode, and anode.

Potential Applications: This technology could be used in various energy storage applications, such as batteries and fuel cells.

Problems Solved: The gas-flow suppression part helps prevent unwanted gas flow within the electrochemical cell, improving its efficiency and safety.

Benefits:

  • Enhanced performance and safety of electrochemical cells.
  • Potential for increased energy storage capacity.
  • Improved longevity of the cell components.

Commercial Applications: Potential commercial applications include electric vehicles, portable electronics, and grid energy storage systems.

Questions about Electrochemical Cells: 1. How does the gas-flow suppression part improve the performance of the electrochemical cell? 2. What are the specific materials used in the gas-flow suppression part and how do they contribute to its function?

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Original Abstract Submitted

According to one embodiment, an electrochemical cell includes: an electrode layered body having an electrolyte having a first surface and a second surface positioned opposite to the first surface , a cathode in contact with the first surface , and an anode in contact with the second surface ; and a gas-flow suppression part that is positioned at least partially adjacent to a side surface of the electrode layered body , and is formed from a material different from those of the electrolyte , the cathode , and the anode