Cheshire, United Kingdom

Kathryn Jane Knuckey

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Kathryn Jane Knuckey: Innovator in Fuel Cell Technology

Introduction

Kathryn Jane Knuckey is a prominent inventor based in Cheshire, GB. She has made significant contributions to the field of fuel cell technology, particularly with her innovative designs that enhance efficiency and performance.

Latest Patents

Kathryn holds a patent for her invention titled "Fuel cells for use at elevated temperatures and pressures." This invention provides a redox fuel cell comprising an anode and a cathode separated by an ion selective polymer electrolyte membrane. It includes means for supplying a fuel to the anode region of the cell and means for supplying an oxidant to the cathode region. Additionally, it features a non-volatile catholyte solution that flows in fluid communication with the cathode, which comprises a polyoxometallate redox couple that is at least partially reduced at the cathode during operation. The catholyte solution further includes vanadium species that result from the speciation of the polyoxometallate at elevated temperatures and/or pressures. Kathryn has 1 patent to her name.

Career Highlights

Kathryn is affiliated with the University of Chester, where she continues to advance her research in fuel cell technology. Her work has garnered attention for its potential applications in various energy systems.

Collaborations

Throughout her career, Kathryn has collaborated with notable colleagues, including Andrew Martin Creeth and Nicholas De Brissac Baynes. These partnerships have contributed to the development and refinement of her innovative technologies.

Conclusion

Kathryn Jane Knuckey is a trailblazer in the field of fuel cell technology, with her innovative patent showcasing her commitment to advancing energy solutions. Her work at the University of Chester and collaborations with esteemed colleagues further highlight her impact in this vital area of research.

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