Inventors with similar research interests:
Location History:
- Stolberg-Breinig, DE (1989)
- Cologne, DE (1994 - 1995)
- Krefeld, DE (1988 - 1996)
- Stolberg, DE (1989 - 1996)
- Koln, DE (1995 - 1999)
- Pulheim, DE (2000 - 2011)
Company Filing History:
Years Active: 1988-2025
Title: The Innovative Contributions of Alexander Klausener
Introduction
Alexander Klausener, an esteemed inventor based in Stolberg, Germany, has made significant contributions to the field of innovation with a remarkable portfolio of 90 patents. His inventions primarily focus on chemical processes and compounds, reflecting his deep understanding of chemistry and its applications.
Latest Patents
Klausener's latest patents include groundbreaking methodologies in controlling phytopathogenic fungi and the decarboxylation of dicarboxylic acids. One of his notable inventions is a method for controlling phytopathogenic fungi using silylated carboxamides, which encompasses the formulation of novel silylated carboxamides as described in detail in his patent documents. This invention highlights the various processes for synthesizing these compounds and elucidates their practical applications in controlling undesirable microorganisms.
Another significant patent of his is the method for the thermal decarboxylation of dicarboxylic acids, particularly focusing on 3,4-ethylene dioxythiophene-2,5-dicarboxylic acid. This innovative method employs the educt in solid form while utilizing fluidized bed bodies during the reaction. Notably, this process is solvent-free, allowing the decarboxylation product to be extracted in gaseous form, exemplifying efficiency in chemical reactions.
Career Highlights
Throughout his career, Klausener has worked with prominent companies, including Bayer Aktiengesellschaft and Wolff Walsrode AG. His extensive experience in these organizations has fortified his expertise in the development of advanced chemical processes and products, contributing immensely to the innovation landscape.
Collaborations
Klausener has collaborated with esteemed colleagues such as Heinz Landscheidt and Stefan Dutzmann. These partnerships have likely facilitated the exchange of ideas and enhanced the innovative potential of their collective efforts in their respective fields.
Conclusion
Alexander Klausener stands out as a notable inventor whose work has effectively advanced numerous chemical processes. Through his extensive patent portfolio and collaborations with other experts in the field, he continues to pave the way for innovation in chemistry, addressing critical challenges associated with phytopathogenic fungi and dicarboxylic acids. His contributions reflect the essential role of inventors in driving technological progress and enhancing our understanding of complex chemical processes.
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