Boulder, CO, United States of America

Jennifer L Owens


Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 22(Granted Patents)


Company Filing History:


Years Active: 2002-2005

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2 patents (USPTO):Explore Patents

Title: Innovations of Jennifer L Owens

Introduction

Jennifer L Owens is a notable inventor based in Boulder, Colorado. She has made significant contributions to the field of polymer science, particularly in the development of photopolymerized microparticles. With two patents to her name, her work has implications for various applications, including drug delivery systems.

Latest Patents

Jennifer's latest patents focus on the preparation and use of photopolymerized microparticles. These methods involve forming crosslinked polymer particles in situ from polymer precursors such as monomers or oligomers. The process includes exposing a composition of at least one polymer precursor, a solvent or solvent mixture, and an antisolvent or antisolvent mixture to photoradiation. This innovative approach allows for the creation of polymer particles that are not only effective in encapsulating bioactive materials but also have low residual solvent levels and high additive encapsulation efficiencies. The methods enable control over particle size and morphology while maintaining low operating temperatures, making them suitable for efficient bulk production.

Career Highlights

Throughout her career, Jennifer has worked with esteemed organizations such as the University Technology Corporation and the University of Colorado. Her experience in these institutions has allowed her to advance her research and contribute to the scientific community.

Collaborations

Jennifer has collaborated with notable colleagues, including Theodore W Randolph and Kristi S Anseth. These partnerships have further enriched her research and innovation in the field of polymer science.

Conclusion

Jennifer L Owens is a pioneering inventor whose work in photopolymerized microparticles has the potential to revolutionize applications in drug delivery and beyond. Her contributions to polymer science are significant and continue to influence the industry.

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