Rheinboellen, Germany

Carsten Reichel



 

Average Co-Inventor Count = 7.0

ph-index = 2

Forward Citations = 30(Granted Patents)


Company Filing History:


Years Active: 2011-2021

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7 patents (USPTO):

Title: Carsten Reichel: Innovator in Transition Metal Catalysis

Introduction

Carsten Reichel, an accomplished inventor based in Rheinboellen, Germany, has made significant contributions to the field of chemistry, particularly in transition metal catalysis. With seven patents to his name, Reichel has been instrumental in advancing methods for synthesizing complex organic compounds.

Latest Patents

Among his notable innovations are his recent patents focusing on the transition metal-catalyzed protodecarboxylation of α-halo-acrylic acid derivatives. These patents detail a method for the synthesis of halo olefins, which possess a range of applications in organic synthesis. Specifically, the methods described involve the generation of halo olefins of specific formulas, showcasing Reichel's expertise in catalysis and organic chemistry.

Career Highlights

Reichel currently works with Boehringer Ingelheim International GmbH, a leading global pharmaceutical company known for its innovative solutions in healthcare. His role at Boehringer Ingelheim positions him at the forefront of drug development and chemical synthesis, contributing to advancements that can improve patient outcomes.

Collaborations

Throughout his career, Carsten Reichel has collaborated with notable professionals, including coworkers Svenja Renner and Joern Merten. Together, they work synergistically to explore new avenues in catalysis and develop innovative solutions that impact the broader scientific community.

Conclusion

In summary, Carsten Reichel stands out as a prominent figure in the realm of chemistry, particularly through his work on transition metal catalysis. His patents reflect a deep understanding of chemical processes, positioning him as a valuable contributor to both academia and industry. As he continues to explore innovative methods and collaborate with peers, Reichel's work promises to influence future discoveries in synthetic chemistry.

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