Wuppertal, Germany

Peter Babczinski


Average Co-Inventor Count = 6.1

ph-index = 12

Forward Citations = 541(Granted Patents)


Location History:

  • Leverkusen, DE (1995)
  • Wuppertal, DE (1984 - 1998)

Company Filing History:


Years Active: 1984-1998

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36 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Peter Babczinski in Herbicide Development

Introduction: Peter Babczinski, based in Wuppertal, Germany, is a prominent inventor renowned for his significant contributions to the field of herbicides. With a remarkable portfolio of 36 patents, Babczinski's work primarily focuses on developing innovative triazolinone intermediates that enhance the effectiveness of herbicides.

Latest Patents: Among his latest patents, Babczinski has developed Intermediates for herbicidal sulphonyl-aminocarbonyltriazolinones, introducing novel triazolinone intermediates with unique substituents bonded via sulfur. His research has led to the formulation of Herbicidal sulphonylaminocarbonyltriazolinones, characterized by the formula where R1 represents a range of substituents, including hydrogen, hydroxyl, and various alkyl groups. These innovations pave the way for advanced herbicidal applications.

Career Highlights: Babczinski's career has been marked by his association with Bayer Aktiengesellschaft, a leading global enterprise in the health and agricultural sectors. His inventive spirit and dedication to research have established him as a key figure in the development of cutting-edge agricultural chemicals.

Collaborations: Throughout his career, Babczinski has collaborated with esteemed colleagues such as Robert R. Schmidt and Hans-Joachim Santel. These partnerships contribute to a dynamic exchange of ideas and innovations, fostering advancements in herbicide technology.

Conclusion: Peter Babczinski exemplifies the spirit of innovation through his extensive work on herbicides, garnering recognition and respect within the scientific community. His patents not only demonstrate his expertise but also reflect the potential for future developments in herbicide formulations, which could significantly benefit agricultural practices worldwide.

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