This inventor holds 10 USPTO granted patents. Top assignees: University of California, Aquanautics Corporation, The United States of America as Represented by the United States. Active years: 1990-2016.
Company Filing History:


Years Active: 1990-2016
Title: Innovations by John Borland Kerr: Pioneering Advances in Electrochemical Devices
Introduction
John Borland Kerr, an accomplished inventor based in Oakland, CA, has made significant contributions to the field of electrochemical devices, holding a total of 10 patents to his name. His innovative work primarily focuses on fuel cells and novel materials that enhance their performance.
Latest Patents
Among his recent inventions, Kerr's patents include developments in membrane-electrode structures for molecular catalysts. His work on water-soluble catalysts, specifically a compound known as (M)meso-tetra(N-Methyl-4-Pyridyl)Porphinepentachloride, has been instrumental in enhancing the performance of oxygen reduction cathodes in PEM fuel cells. These innovations support high current densities, although the voltages achieved are lower compared to traditional platinum catalysts. Notably, Kerr has developed a model for the dynamics of electrode action, which allows for optimization of MEA electrodes to improve the efficiency of various chemical processes.
Additionally, he has patented a thin film device that incorporates carbon nanotube polymer compositions. This device features an anode, a cathode, and at least one light-emitting layer containing carbon nanotubes and a conductive polymer, showcasing his versatility in the realm of electrochemical applications.
Career Highlights
Throughout his career, John Borland Kerr has collaborated with reputable institutions such as the University of California and Aquanautics Corporation. His work in these esteemed organizations has played a pivotal role in advancing research and development in electrochemical technologies.
Collaborations
Kerr has worked alongside notable professionals such as Gao Liu and Shanger Wang, contributing to a collaborative environment that fosters innovation and practical applications of theoretical concepts in the field.
Conclusion
John Borland Kerr's inventive spirit and dedication to improving electrochemical devices through innovative patents position him as a key figure in the field. His contributions continue to pave the way for future advancements, ensuring a promising trajectory for non-platinum group metal catalysts and carbon nanotube applications in next-generation energy solutions.