Reno, NV, United States of America

Beril Kavlicoglu


Average Co-Inventor Count = 5.6

ph-index = 2

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 2007-2012

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3 patents (USPTO):Explore Patents

Title: An Insight into the Innovations of Beril Kavlicoglu

Introduction: Beril Kavlicoglu, an inventive mind based in Reno, NV, has made significant contributions to the field of magnetorheological materials. With three patents to her name, she has been at the forefront of developing advanced materials that harness the unique properties of magnetorheological fluids and gels.

Latest Patents: Among her recent innovations, Kavlicoglu has focused on nanostructured magnetorheological polymer fluids and gels. These revolutionary materials include a supramolecular polymer gel as a component of the carrier. The gels utilize supramolecular polymers that incorporate bipyridine or terpyridine ligands, which can engage in metal coordination bonding. Furthermore, the magnetizable particles used within these materials are coated with a supramolecular surfactant-polymer, enhancing their functionality.

Career Highlights: Kavlicoglu's career has involved pivotal roles at esteemed institutions such as the Nevada System of Higher Education, on behalf of the University of Nevada, Reno, and the University and Community College System of Nevada. Her work has focused on research and development, particularly in the application of innovative materials for various technological advancements.

Collaborations: Collaboration has been a significant aspect of Kavlicoglu's career. She has worked alongside notable colleagues, including Alan Fuchs and Faramarz Gordaninejad, contributing to the dynamic exchange of ideas and furthering advancements in her research domain.

Conclusion: Beril Kavlicoglu's contributions to magnetorheological materials emphasize her role as a leading inventor in her field. With her innovative patents and impactful collaborations, she continues to pave the way for new technologies that can transform various applications in industries reliant on advanced material science.

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