Location History:
- Mannheim, DE (2014 - 2018)
- Ludwigshafen, DE (2018 - 2019)
- Ludwigshafen am Rhein, DE (2022)
Company Filing History:
Years Active: 2014-2022
Title: The Remarkable Innovations of Karolin Geyer
Introduction
Karolin Geyer, an accomplished inventor based in Mannheim, Germany, has made significant contributions to the field of polymer science. With a robust portfolio of 10 patents, she has demonstrated a profound understanding of the complexities of high-pressure polymerization processes and their applications.
Latest Patents
Among her latest innovations is the high-pressure polymerization process for liquid ethylene copolymers. This groundbreaking invention relates to a continuous process that prepares a liquid ethylene copolymer consisting of 20 to 60 wt % ethylene and at least 20 wt % of an acrylate selected from C-Calkyl (meth)acrylate. The polymerization process utilizes at least 2 wt % of a chain transfer agent, resulting in a novel lubricant designed to reduce friction between moving surfaces. Furthermore, she has developed a lubricant that also comprises a liquid ethylene copolymer, maintaining similar proportions of ethylene and acrylate, presenting valuable solutions in various industrial applications.
Career Highlights
Throughout her career, Geyer has been associated with notable companies, including BASF SE Corporation and Gotion, Inc. Her work has consistently focused on pioneering advancements within the polymer sector, demonstrating her commitment to innovation and sustainability in material sciences.
Collaborations
Karolin has collaborated with esteemed colleagues such as Jürgen Wortmann and Michael Lutz. These partnerships have undoubtedly enriched her research and development efforts, elevating the impact of her work on the industry.
Conclusion
Karolin Geyer embodies the spirit of innovation with her remarkable patents and collaborative efforts. Her contributions to polymer science, particularly in developing effective lubricants, showcase her dedication to advancing technology and improving applications across various fields. As she continues to push the boundaries of her research, the potential for further groundbreaking innovations remains promising.