This inventor holds 1 USPTO granted patent. Top assignee: Yeda Research and Develpment & Co. Ltd. Active years: 1990.
Company Filing History:
Years Active: 1990
Title: Suzi Steinberg: Innovator in Electrochemical Processes
Introduction
Suzi Steinberg is a prominent inventor based in Rehovot, Israel. She has made significant contributions to the field of electrochemistry through her innovative work on organic monolayer films. Her research focuses on the development of technologies that enhance the detection of specific species in complex mixtures.
Latest Patents
Steinberg holds a patent for her invention titled "Ionic recognition and selective response in self-assembling monolayer." This patent describes a method where organic monolayer films are applied to an electrically conductive substrate, resulting in an electrode suitable for electrochemical processes. The ultrathin membrane created by this film allows for the selective detection of certain species while blocking others. The film comprises active species that are selective towards specific components in a mixture, along with a blocking surface sealing component. The components can be attached to the substrate through various means, including adsorption, chemisorption, and electro-chemical deposition. She has 1 patent to her name.
Career Highlights
Steinberg is associated with Yeda Research and Development Co. Ltd., where she continues to advance her research in electrochemical applications. Her work has garnered attention for its potential impact on various industries, including environmental monitoring and biomedical applications.
Collaborations
Throughout her career, Steinberg has collaborated with notable colleagues, including Jacob Sagiv and Israel Rubinstein. These partnerships have contributed to the advancement of her research and the successful development of her patented technologies.
Conclusion
Suzi Steinberg is a trailblazer in the field of electrochemistry, with her innovative patent paving the way for advancements in selective detection technologies. Her contributions continue to influence the scientific community and hold promise for future applications.