Pasadena, CA, United States of America

Artemis Ailianou


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2015-2018

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2 patents (USPTO):Explore Patents

Title: Inventor Spotlight: Artemis Ailianou

Introduction

Artemis Ailianou, based in Pasadena, California, is an innovative inventor known for his advancements in polymer science. With two patents to his name, he has contributed significantly to the synthesis and application of ultra-high molecular weight polymers. His research aims to enhance the physical properties of these polymers for various industrial applications.

Latest Patents

Artemis Ailianou's latest patents focus on "Methods and systems for synthesis of an ultra-high molecular weight polymer." This method involves controlling the physical state of ultra-high molecular weight polymers to make them suitable for further processing. The patented process combines a catalyst, monomers, and an additive, allowing the synthesis of a nascent polymer while facilitating co-crystallization with the additive. This innovative approach paves the way for new techniques in polymer processing.

Career Highlights

Throughout his career, Ailianou has made significant strides in polymer research. He has held positions at renowned institutions such as the California Institute of Technology and Loughborough University. His experience in these prestigious universities has provided him with a solid foundation in scientific research and innovation.

Collaborations

Artemis Ailianou has collaborated with notable colleagues in his field, including Julia A. Kornfield and Sara Ronca. Their joint efforts in research and development reflect a commitment to advancing the science of polymers and exploring their potential applications in various industries.

Conclusion

Artemis Ailianou stands out as a key figure in the realm of polymer innovations. With his two patents and collaboration with esteemed institutions and researchers, he continues to push the boundaries of what is possible in polymer synthesis. His work is contributing to a deeper understanding of ultra-high molecular weight polymers and their future applications.

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