Placentia, CA, United States of America

Lisa Viculis

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2011

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1 patent (USPTO):Explore Patents

Title: Inventor Profile: Lisa Viculis

Introduction: Lisa Viculis is an innovative inventor based in Placentia, California, who holds a patent that contributes to the field of materials science. Her work focuses on the development of unique polymers that possess remarkable physical properties useful in various applications.

Latest Patents: Lisa's noteworthy patent is for "Ultraviolet Transmissive Polyhedral Silsesquioxane Polymers." This invention highlights her expertise in inorganic/organic hybrid polymers that feature silsesquioxane cages. These polymers are particularly recognized for their strength, hardness, and optical transparency at infrared and ultraviolet wavelengths. The preparation involves polymerizing functionalized polyhedral silsesquioxane monomers that are designed with two complementarily reactive functional groups. By incorporating spacer moieties, the polymers achieve enhanced steric mobility and a more complete cure compared to traditional polyhedral silsesquioxanes.

Career Highlights: Throughout her career, Lisa Viculis has made significant contributions while working with leading organizations. She has shared her expertise as part of Panasonic Electric Works Co., Ltd. and the University of Michigan. Her experience in these esteemed institutions has allowed her to influence advancements in polymer technology.

Collaborations: Lisa has collaborated with notable colleagues in her field, including Richard M. Laine and Norihiro Takamura. These partnerships have fostered a collaborative environment that has led to further innovations in materials science.

Conclusion: Lisa Viculis stands out as a dedicated inventor whose work on ultraviolet transmissive silsesquioxane polymers represents a significant advancement in polymer technology. Her career is marked by valuable contributions to both industry and academia, showcasing her commitment to innovation and collaboration.

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