Leverett, MA, United States of America

James D Capistran


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: The Innovative Journey of James D. Capistran

Introduction: James D. Capistran is an accomplished inventor based in Leverett, Massachusetts. With a focus on polymer science, he has significantly contributed to the field with his innovative patent. His work primarily revolves around enhancing the conductivity of poly (p-xylylidene) materials, which has numerous applications in various industries.

Latest Patents: James D. Capistran holds a notable patent for "Conducting Poly (p-xylylidenes)." This patent describes a process where poly (p-xylylidenes) films, foams, or fibers, originally insulators, are transformed into conducting materials by exposure to p-type or n-type dopants. The resulting materials exhibit a notably high degree of polymerization. By casting poly (p-xylylidene) films from aqueous solutions of a polyelectrolyte, followed by processing at elevated temperatures, fibers and foams can be produced. This innovative approach allows for significant increases in conductivity, with p-type doping yielding an increase of up to fifteen orders of magnitude, and n-type doping achieving a nine-order magnitude increase. Additionally, doping molecularly oriented films and fibers results in a highly anisotropic conductor, enhancing conductivity in the desired orientation.

Career Highlights: James is primarily affiliated with the United States of America as represented by the Secretary of the Air Force, where he has dedicated his career to pioneering research in polymer science. His innovative spirit and contributions to the field of conducting materials highlight his important role as an inventor.

Collaborations: Throughout his career, James D. Capistran has collaborated with esteemed colleagues, including Frank E. Karasz and Robert W. Lenz. Their collective efforts have advanced the understanding and application of conducting polymers, demonstrating the importance of teamwork in the innovation process.

Conclusion: James D. Capistran's inventions reflect his commitment to advancing materials science, particularly in the realm of conducting polymers. His patent not only enhances the understanding of poly (p-xylylidenes) but also opens up new avenues for practical applications in technology and industry. As an inventor, James continues to inspire future innovations in the field.

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