Millington, NJ, United States of America

James E Potts


Average Co-Inventor Count = 1.4

ph-index = 11

Forward Citations = 425(Granted Patents)


Location History:

  • Bernards Township, NJ (US) (1976 - 1978)
  • Somerset, NJ (US) (1979)
  • Millington, NJ (US) (1976 - 1985)
  • Bernards Township, Morris County, NJ (US) (1983 - 1985)

Company Filing History:


Years Active: 1976-1985

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11 patents (USPTO):Explore Patents

Title: Discovering James E Potts: Innovator in Polymer Technology

Introduction

James E Potts is a distinguished inventor based in Millington, NJ. With a remarkable portfolio of 11 patents, he has made significant contributions to the field of polymer technology. His work is characterized by innovative approaches that address complex challenges in material science.

Latest Patents

Among his latest inventions, Potts has developed methods for creating low level irradiated linear low density ethylene/alpha-olefin copolymers. This innovation allows for the introduction of crosslinks into the copolymer without causing significant gelation, resulting in improved rheology and superior film fabrication. Additionally, he has patented disposable articles that are made from water-soluble polymers and coated with degradable water-insoluble polymers, paving the way for more environmentally friendly disposable solutions.

Career Highlights

Throughout his career, James E Potts has been associated with notable companies, including Union Carbide Corporation. His work in these environments has enabled him to bring his innovative ideas to fruition, contributing significantly to advancements in polymer applications.

Collaborations

Collaboration has played a vital role in Potts's success. He has worked alongside esteemed colleagues such as Robert A Clendinning and Walter D Niegisch, fostering a dynamic environment that encourages the exchange of ideas and technical expertise.

Conclusion

James E Potts stands out as a prominent inventor in the realm of polymer technology. His innovative patents reflect his commitment to improving materials for various applications, showcasing his ability to intertwine creativity with practical solutions. As he continues to push the boundaries of polymer science, his contributions will undoubtedly influence the future of materials engineering.

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