Chungbuk, South Korea

Jo Gunn


 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: The Innovations of Jo Gunn in Thermally Conductive Coatings

Introduction

Jo Gunn, an inventive mind based in Chungbuk, South Korea, has made significant contributions to the field of materials science through his pioneering work in thermally conductive coatings. His expertise and creativity have led to the development of an innovative coating composition that greatly enhances the performance and versatility of coated surfaces.

Latest Patents

Among his notable accomplishments, Jo holds a patent for thermally conductive ice-phobic coatings. This unique coating composition is designed to provide a surface with extremely low adhesion to ice, facilitating faster ice removal through heating methods. The formulation includes a silicone rubber, a thermal conductive filler, a reactive polysiloxane, an unsaturated group containing alkoxysilane, a catalyst, and a solvent, making it a cutting-edge solution for various applications.

Career Highlights

Throughout his career, Jo has been associated with prominent companies, including Dow Global Technologies LLC and Dow Silicones Corporation. His work in these organizations has allowed him to refine his skills and contribute to advancements in coating technologies, demonstrating a deep understanding of both practical and theoretical aspects of materials science.

Collaborations

Jo has collaborated with esteemed professionals in his field, notably Xiaomei Song and Yu Chen. These partnerships have not only enriched his research but have also fostered an environment of innovation and creativity, highlighting the importance of teamwork in achieving significant scientific breakthroughs.

Conclusion

In summary, Jo Gunn's innovative spirit and dedication to the development of thermally conductive ice-phobic coatings exemplify the impact of individual inventors in advancing technology. His work continues to inspire and pave the way for future innovations in material sciences.

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