Location History:
- Saarbruecken, DE (2006)
- Saarbrücken, DE (2011)
Company Filing History:
Years Active: 2006-2011
Title: Innovations by Inventor Kai Gossmann
Introduction
Kai Gossmann is a prominent inventor based in Saarbrücken, Germany. With a robust background in material science, she has contributed significantly to the field through her innovative patents and collaborations with notable institutions.
Latest Patents
Kai Gossmann holds two patents that showcase her expertise and creativity. The first patent is related to the chemomechanical production of functional colloids. This method involves reactively fragmenting particles in a mechanical process within a dispersant, facilitated by the presence of a modifying agent that binds chemically to the fragmented colloid particles. The second patent pertains to the production of nanoscale corundum powders, along with the sintered compacts derived from these powders. In this method, an AlO precursor is created by introducing seed crystals into an aqueous solution of an aluminum compound, followed by the addition of a base. The precursor is then converted into corundum through high-temperature calcination, after which any additional salts present are removed.
Career Highlights
Throughout her career, Gossmann has worked with esteemed organizations, including the Leibniz Institute for New Materials and Bühler Partec GmbH. Her experiences in these institutions have been instrumental in shaping her innovative approaches and providing a platform for her research.
Collaborations
Gossmann has collaborated with several prominent figures in her field, including Helmut Schmidt and Robert Drumm. These partnerships have enabled her to enhance her research and expand the impact of her inventions in the materials science domain.
Conclusion
Kai Gossmann's work exemplifies the spirit of innovation in material science. Her patents not only reflect her intellect and creativity but also contribute substantially to advancing technology in her field. Through collaboration and dedication, she continues to make significant strides, garnering recognition for her exceptional contributions.