Leverkusen, Germany

Stefan Kirschbaum

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: **Inventor Spotlight: Stefan Kirschbaum**

Introduction

Stefan Kirschbaum, an innovative inventor based in Leverkusen, Germany, has made significant contributions to the field of chemistry, particularly in the development of radiation-curable materials. With a single patent to his name, his work focuses on alkenyl ether polyols, showcasing his expertise in creating sustainable and efficient solutions for various applications.

Latest Patents

Kirschbaum's notable patent, titled "Alkenyl ether polyols," outlines a method for producing radiation-curable alkenyl ether polyols. This method leads to the creation of these polyols, which are then utilized in the synthesis of radiation-interlinkable oligomers or polymers through polyaddition or polycondensation reactions. Notably, his inventions are particularly relevant for the synthesis of radiation-curable polyesters, polyethers, polyurethanes, and polyureas, with a specific emphasis on UV-curable polyurethanes. The patent also delves into the resulting polyurethane polymers formed by reacting the alkenyl ether polyol with polyisocyanate.

Career Highlights

Throughout his career, Stefan Kirschbaum has been associated with prominent organizations that have advanced his research and innovation capabilities. He has worked at Henkel AG & Company, KGaA, where he contributed to the company's commitment to innovation in consumer goods and materials. He also has been affiliated with the Max Planck Society for the Advancement of Science, one of the leading research institutions in Germany, which has facilitated his exploration into complex scientific concepts and patent development.

Collaborations

Collaboration has been key in Kirschbaum’s journey as an inventor. He has worked alongside esteemed coworkers, including Andreas Taden and Katharina Landfester, who have played essential roles in supporting and enhancing his research efforts. This teamwork has undoubtedly contributed to the depth and impact of his innovative work in the field of radiation-curable products.

Conclusion

Stefan Kirschbaum exemplifies the spirit of innovation that drives advancements in the chemical industry. His development of alkenyl ether polyols and related technologies not only highlights his inventive prowess but also his dedication to creating materials that meet contemporary demands in sustainability and efficacy. As he continues his work, his contributions will likely resonate throughout various sectors reliant on innovative chemical solutions.

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