This inventor holds 2 USPTO granted patents and 1 published patent application. Top assignee: Sabic Global Technologies B.v.. Active years: 2016-2017.
Location History:
- Thuwal, SA (2016)
- Edmonton, CA (2017)
Company Filing History:
Years Active: 2016-2017
Title: Tate C Hauger: Innovator in Organic Electronics
Introduction
Tate C Hauger is a notable inventor based in Edmonton, Canada. He has made significant contributions to the field of organic electronics, holding 2 patents that showcase his innovative approach to semiconducting materials.
Latest Patents
His latest patents include "Compounds containing electron rich and electron deficient regions and their use in organic electronic applications." This patent discloses semiconducting or conducting organic small molecules, oligomers, and polymers based on a donor-acceptor strategy featuring heavy group 16 elements such as selenium and tellurium at the core of acceptor units. These materials can be utilized in various organic electronic devices. Another patent, "Synthesis of new small molecules/oligomers with high conductivity and absorption for optoelectronic application," reveals semiconducting organic small molecules and oligomers that contain a central, electron-rich, functionalized dihydrodicyclopentylanthracene core. This core is connected to electron-deficient monomeric units featuring group 16 heteroatoms, which can be used in organic photovoltaic materials.
Career Highlights
Tate C Hauger is currently associated with Sabic Global Technologies B.V., where he continues to push the boundaries of innovation in organic electronics. His work has garnered attention for its potential applications in various electronic materials and devices.
Collaborations
He has collaborated with notable coworkers such as S M Ibrahim Al-Rafia and Jillian Mary Buriak, who is recognized for her contributions to the field.
Conclusion
Tate C Hauger's innovative work in organic electronics and his patents reflect his commitment to advancing technology in this field. His contributions are paving the way for future developments in organic electronic materials and devices.
