Ottawa, Canada

Cara Weir

This inventor holds 1 USPTO granted patent. Top assignee: Nortel Networks Corporation. Active years: 2005.


% Patents Active = 100.0

Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 8(Granted Patents)


Company Filing History:


Years Active: 2005

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Cara Weir

Introduction

Cara Weir, an innovative inventor based in Ottawa, Canada, has made notable contributions in the field of electro-optical devices. As a skilled professional at Nortel Networks Corporation, she has leveraged her expertise to develop cutting-edge technologies that push the boundaries of modern science.

Latest Patents

Cara Weir holds a patent for "Zwitterionic chromophores and polymers containing such chromophores." This inventive work involves the synthesis of a non-linear chromophore by reacting a picolinium halide with a desired functional group, particularly hydroxyl (-OH). The resulting chromophore can be graft polymerized onto a polymer featuring complementary functional groups, such as carboxyl groups, and may undergo cross-linking. These advanced polymers hold significant potential for applications in electro-optical devices, offering exciting prospects for the future of technology.

Career Highlights

During her career at Nortel Networks Corporation, Cara Weir has demonstrated remarkable ingenuity and drive. Her solitary patent showcases her capability not only as a researcher but also as a practical innovator. By focusing on materials that enhance the performance of electronic devices, she has contributed to the evolution of technology in meaningful ways.

Collaborations

Cara has collaborated with talented coworkers, including Zhi Yuan Wang and Naiheng Song. These partnerships often deepen the creative process, leading to groundbreaking developments and a shared vision for innovation.

Conclusion

With her remarkable achievements and innovative spirit, Cara Weir stands out as a dynamic inventor in the field. Her pioneering work on zwitterionic chromophores and polymers not only enriches her professional portfolio but also sets a foundation for future advancements in electro-optical technologies. As she continues her journey in research and development, the impact of her contributions will surely resonate throughout the scientific community.

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