Taipei, Taiwan

Mei-Tsu Lee


Average Co-Inventor Count = 2.5

ph-index = 4

Forward Citations = 321(Granted Patents)


Location History:

  • Whitehall, OH (US) (1986)
  • Chillicothe, OH (US) (1988)
  • Taipei, TW (1991)
  • Centerville, OH (US) (1989 - 1993)

Company Filing History:


Years Active: 1986-1993

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5 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Mei-Tsu Lee

Introduction

Mei-Tsu Lee, a talented inventor based in Taipei, Taiwan, has made significant contributions to the field of electrochemical devices. With a remarkable portfolio of five patents, her work showcases her expertise and innovative spirit.

Latest Patents

Among her latest inventions are methods for creating radiation-cured solid electrolytes and the design of electrochemical devices using these materials. One of her groundbreaking patents outlines a method for forming an interpenetrating polymeric network containing a liquid electrolyte for use in solid-state electrochemical cells. This involves a mixture of a liquid monomeric or prepolymeric radiation polymerizable compound, a radiation-inert ionically conducting liquid, and an ionizable alkaline metal salt. The mixture is subjected to actinic radiation, which results in the crosslinking of the radiation polymerizable ionically conducting material, forming a solid matrix that incorporates the ionically conducting liquid.

Another notable patent focuses on the preparation of radiation-cured solid electrolytes. This involves forming a solid electrolyte that consists of a polymeric network structure containing an ionically conducting liquid. The process includes a mixture of a crosslinkable polysiloxane or polyethylene oxide and an ionizable ammonium or alkali metal salt, which is crosslinked through actinic radiation to create a solid matrix that allows for continuous high conductivity paths throughout.

Career Highlights

Mei-Tsu Lee has worked with prominent companies in the field, including MHB Joint Venture and Ultracell Corporation. Her dedication to advancing technology in electrochemical devices has proven her to be an influential figure in her industry.

Collaborations

Throughout her career, Mei-Tsu has collaborated with esteemed colleagues, including Gerhart Schwab and Dale R. Shackle. These partnerships have played a pivotal role in advancing her research and the development of innovative solutions in electrochemistry.

Conclusion

In conclusion, Mei-Tsu Lee's innovative work and patents have significantly impacted the field of solid-state electrochemical devices. Her dedication to research and collaboration highlights her as a leading inventor in the modern technological landscape. As she continues her work, the contributions of Mei-Tsu Lee will be closely watched by the industry and academia alike.

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