Cambridge, United Kingdom

Julian Henschke


Average Co-Inventor Count = 3.4

ph-index = 2

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2003

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2 patents (USPTO):Explore Patents

Title: Innovations of Julian Henschke in Asymmetric Reactions

Introduction

Julian Henschke is a notable inventor based in Cambridge, GB. He has made significant contributions to the field of chemistry, particularly in the development of ligands for transition metal catalyzed asymmetric reactions. With a total of two patents to his name, Henschke's work is recognized for its innovative approach and practical applications.

Latest Patents

Henschke's latest patents include "Phosphorus p-cyclophane ligands and their use in transition metal catalyzed asymmetric reactions" and "Ruthenium complexes and their use in asymmetric hydrogenation." The first patent focuses on chiral di-phosphonites and phosphorous diamides based on the ps-ortho disubstituted p-cyclophane skeleton, which serve as effective ligands for transition metals such as rhodium, iridium, and ruthenium. The ligands are preferably linked to the transition metals by a diene compound, specifically 2,5-Norbornadiene (NBD) and 1,5-Cyclooctadiene (COD). The second patent explores the use of ruthenium complexes in asymmetric hydrogenation, further showcasing Henschke's expertise in this area.

Career Highlights

Julian Henschke is associated with Chirotech Technology Limited, where he continues to advance his research and development efforts. His work has garnered attention for its potential impact on various applications in the field of chemistry.

Collaborations

Henschke collaborates with esteemed colleagues, including Christopher James Cobley and James Andrew Ramsden. Their combined expertise contributes to the innovative projects undertaken at Chirotech Technology Limited.

Conclusion

Julian Henschke's contributions to the field of chemistry through his patents and collaborations highlight his role as a significant inventor. His work on ligands for transition metal catalyzed asymmetric reactions demonstrates the potential for advancements in chemical applications.

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