This inventor holds 1 USPTO granted patent. Top assignee: Clea Technologies B. V.. Active years: 2016.
Company Filing History:
Years Active: 2016
Title: Bernadett Kondor: Innovator in Magnetic Enzyme Technology
Introduction
Bernadett Kondor is a prominent inventor based in Voorburg, Netherlands. She has made significant contributions to the field of enzyme technology, particularly through her innovative patent related to magnetic enzyme aggregates. Her work exemplifies the intersection of nanotechnology and biochemistry, showcasing her expertise and dedication to advancing scientific knowledge.
Latest Patents
Kondor holds a patent for a "Non-leachable magnetic cross-linked enzyme aggregate." This invention describes a non-leachable, crosslinked magnetic enzyme aggregate formed on a nanometer scale. It consists of a hybrid nano-composite made from functionalized magnetic nanoparticles and aggregated enzyme particles. The magnetic enzyme aggregate can contain a high enzyme content of up to 99%, allowing for its use in small-scale applications, such as in a fluidized bed. Additionally, the patent outlines a process for preparing this innovative magnetic enzyme aggregate.
Career Highlights
Bernadett Kondor is associated with Clea Technologies B.V., where she continues to develop her groundbreaking work in enzyme technology. Her career reflects a commitment to research and innovation, contributing to advancements that have practical applications in various industries.
Collaborations
Kondor has collaborated with notable scientists, including Roger Arthur Sheldon and Menno Jort Sorgedrager. These partnerships have enhanced her research and expanded the impact of her inventions in the scientific community.
Conclusion
Bernadett Kondor's contributions to the field of magnetic enzyme technology highlight her role as an innovative inventor. Her patent for a non-leachable magnetic cross-linked enzyme aggregate represents a significant advancement in enzyme applications. Through her work, she continues to inspire future innovations in the field.