Camberley, United Kingdom

Sean Leo Willis

USPTO Granted Patents = 15 


 

Average Co-Inventor Count = 4.7

ph-index = 4

Forward Citations = 112(Granted Patents)


Location History:

  • Surrey, GB (2005 - 2018)
  • Camberley, GB (2019 - 2024)
  • Farnham, GB (2023 - 2024)

Company Filing History:


Years Active: 2005-2024

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15 patents (USPTO):Explore Patents

Title: The Innovations of Sean Leo Willis

Introduction

Sean Leo Willis, an accomplished inventor based in Camberley, GB, is recognized for his significant contributions to the field of polymer science. With a remarkable portfolio of 15 patents, Willis has made strides in developing materials that have both medical and practical applications.

Latest Patents

Among his latest inventions are innovative radiopaque polymers. One patent describes a polymer with a backbone consisting of a polyhydroxylated polymer cross-linked by a C3 to C8 diacid. Another noteworthy invention is focused on radiopaque hydrogels, particularly radiopaque hydrogel microspheres. This invention comprises polymers that include 1,2-diol or 1,3-diol groups acetalized with radiopaque species, showcasing Willis's expertise in creating advanced materials with medicinal properties.

Career Highlights

Sean Leo Willis has built a successful career in the biomedical field, having worked with prominent companies such as Biocompatibles UK Limited and Boston Scientific Medical Device Limited. His work in these esteemed organizations has allowed him to refine his skills in polymer innovation and engage in groundbreaking research.

Collaborations

Throughout his career, Willis has collaborated with notable professionals, including Andrew Lennard Lewis and Koorosh Ashrafi. These collaborations have provided opportunities for knowledge exchange and the development of complex inventions that contribute to advancements in medical technologies.

Conclusion

With his significant number of patents and impressive career trajectory, Sean Leo Willis continues to be a vital contributor to the field of polymer science. His innovative work on radiopaque polymers demonstrates a commitment to advancing medical applications, ultimately improving patient care and outcomes in the healthcare industry.

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