Taunton, MA, United States of America

Nathan Pawlowski


Average Co-Inventor Count = 6.0

ph-index = 2

Forward Citations = 18(Granted Patents)


Company Filing History:


Years Active: 2006

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2 patents (USPTO):Explore Patents

Title: Nathan Pawlowski: Innovator in Flexible Optical Waveguides

Introduction

Nathan Pawlowski is a notable inventor based in Taunton, MA, who has made significant contributions to the field of optical materials. He holds two patents that focus on innovative waveguide compositions, which are essential for the development of flexible optical waveguides.

Latest Patents

Pawlowski's latest patents include compositions suitable for forming flexible optical waveguides. The first patent describes a polymer composition that includes units of the formula (RSiO), where R is a substituted or unsubstituted organic group. This composition features a first component that alters the solubility of the material in a dried state upon activation. Additionally, a second component contains various functional groups, such as hydroxy, amino, and thiol, which enhance the flexibility of the composition both before and after activation. The second patent also focuses on similar compositions, emphasizing the inclusion of epoxides, oxetanes, and vinyl ethers to improve flexibility.

Career Highlights

Nathan Pawlowski is currently employed at Rohm & Haas Electronic Materials LLC, where he continues to innovate in the field of electronic materials. His work has been instrumental in advancing the technology behind flexible optical waveguides, which have applications in various electronic devices.

Collaborations

Pawlowski has collaborated with notable coworkers, including James G. Shelnut and Nicola Pugliano, who have contributed to his research and development efforts in optical materials.

Conclusion

Nathan Pawlowski's contributions to the field of flexible optical waveguides highlight his innovative spirit and dedication to advancing technology. His patents reflect a commitment to improving the functionality and flexibility of optical materials, paving the way for future advancements in electronic devices.

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