Lutzelhouse, France

Francois Schue


Average Co-Inventor Count = 7.0

ph-index = 2

Forward Citations = 17(Granted Patents)


Company Filing History:


Years Active: 1978-1980

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Francois Schue

Introduction

Francois Schue is a notable inventor based in Lutzelhouse, France. He has made significant contributions to the field of polymer chemistry, particularly in the area of anionic polymerization. With a total of 2 patents to his name, Schue's work has advanced the understanding and application of polymerization processes.

Latest Patents

Francois Schue's latest patents include a groundbreaking process for anionic polymerization in the presence of cryptants. This innovative method involves the reaction of olefinic, vinyl, and heterocyclic monomers with a catalyst that induces anionic polymerization, utilizing an aprotic macroheterocyclic cryptant as the only medium for the reaction. His second patent describes a novel process for polymerization or copolymerization of monomers, which is carried out in the presence of an anionic initiator and a macroheterocyclic complexing agent. This process allows for the formation of a third bridge between nitrogen atoms in the molecule, enhancing the efficiency of the polymerization process.

Career Highlights

Francois Schue is currently associated with the Société Nationale des Poudres et Explosifs, where he continues to innovate in the field of polymer chemistry. His work has not only contributed to academic knowledge but has also had practical applications in various industries.

Collaborations

Throughout his career, Schue has collaborated with esteemed colleagues such as Jean-Marie Lehn and Bernd Kaempf. These collaborations have further enriched his research and have led to advancements in the field of polymer science.

Conclusion

Francois Schue's contributions to anionic polymerization and his innovative patents highlight his role as a significant figure in the field of polymer chemistry. His work continues to influence both academic research and industrial applications.

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