Pittsfield, MA, United States of America

Kim R Choate

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Kim R. Choate: Pioneering Innovations in Polycarbonate Fibers

Introduction

Kim R. Choate, an inventive mind based in Pittsfield, MA, has made significant contributions to the field of materials science with his innovative work on polycarbonate fibers. His singular patent showcases not only his creativity but also the practical applications of his discoveries in various fibrous substrates.

Latest Patents

Kim R. Choate holds a patent for "Polycarbonate fibers and substrates comprising same." This remarkable invention discloses polycarbonate fibers and fibrous substrates, including papers, composed of these unique fibers. The fibers are synthesized from a polymeric composition featuring a cross-linkable polycarbonate, which includes endgroups derived from monofunctional benzophenones or repeating units from difunctional benzophenones. An essential aspect of this innovation is the ability of the fibers to undergo crosslinking when exposed to ultraviolet light, enhancing the properties of the fibrous substrate significantly.

Career Highlights

Kim’s professional journey is marked by his tenure at Sabic Global Technologies B.V., where he has honed his expertise in materials technology and contributed to cutting-edge research and development projects. His dedication to advancing polycarbonate technology has positioned him as a noteworthy inventor in the industry.

Collaborations

Throughout his career, Kim has collaborated with talented professionals, including Amanda Marie Flores and Jacob Scott Labelle. These partnerships have allowed for a dynamic exchange of ideas and innovation, fostering advancements in polycarbonate fiber technology.

Conclusion

In summary, Kim R. Choate stands out as a leading inventor in the realm of polycarbonate materials, with a patent that illustrates the potential of these fibers in fibrous substrates. His work at Sabic Global Technologies B.V. and collaborations with esteemed colleagues highlight the collaborative spirit of innovation in enhancing material properties. Kim's contributions will undoubtedly inspire future advancements in the field.

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