Munster, Germany

Karl-Ernst Schulte


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 21(Granted Patents)


Company Filing History:


Years Active: 1990

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1 patent (USPTO):Explore Patents

Title: The Innovations of Karl-Ernst Schulte: A Pioneer in Enantiomer Production

Introduction: Karl-Ernst Schulte, an esteemed inventor hailing from Münster, Germany, has made significant contributions to the field of chemical processes through his innovative patent focusing on the enantiomers of 2-arylpropionic acids. With a dedication to enhancing chemical methods, Schulte has demonstrated the impact of precise scientific advancements on the pharmaceutical industry.

Latest Patents: Schulte holds a notable patent titled "Process for obtaining enantiomers of 2-arylpropionic acids." This innovative process involves reacting a racemic mixture with an amine-enantiomer. Specifically, it entails converting the racemate of 2-arylpropionic acid with an optically active form of threo-1-p-nitrophenyl-2-aminopropane-1,3-diol into diastereomeric salts. The process further includes the separation of these salts and the conversion of the obtained pure diastereomers into either the free acids of the enantiomer forms or their respective salts.

Career Highlights: Karl-Ernst Schulte is currently affiliated with Medice Chem.-Pharm. Fabrik Putter GmbH & Co. KG, where he continues to explore innovations in the pharmaceutical domain. His work emphasizes the important role of enantiomers in drug efficacy and safety. Schulte's expertise has not only advanced his career but has also contributed significantly to his company's research portfolio.

Collaborations: Throughout his career, Schulte has collaborated closely with fellow researcher Gottfried Blaschke. Their combined efforts illustrate the importance of teamwork in advancing innovative processes and methodologies within the challenging field of pharmaceuticals.

Conclusion: Karl-Ernst Schulte represents the spirit of innovation within the realm of chemical processes. His dedication to improving methods for obtaining enantiomers showcases the profound impact that inventive minds can have on the pharmaceutical industry. Schulte's work not only enhances scientific understanding but also paves the way for developments that can lead to safer and more effective medical treatments.

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