This inventor holds 1 USPTO granted patent. Top assignee: University Patents, Inc.. Active years: 1987.
Company Filing History:
Years Active: 1987
Title: Gregory C. Farrington: Innovator in Optical Materials
Introduction
Gregory C. Farrington is a notable inventor based in Wallingford, PA (US). He has made significant contributions to the field of optical materials, particularly through his innovative patent work. His research focuses on the intercalation of polyvalent cations in beta double prime alumina, which has implications for various optical applications.
Latest Patents
Farrington holds a patent for "Optical materials from intercalation of polyvalent cations in beta double prime alumina." This invention involves a sensible amount of at least one polyvalent cationic species intercalated within the beta double prime alumina. The preferred embodiment includes trivalent and/or tetravalent cationic species, especially those derived from the lanthanide and actinide series of elements. Certain materials developed from this patent exhibit phosphorescence or fluorescence, and some are believed to be capable of producing laser emission upon suitable irradiation. The patent also outlines methods for modifying beta double prime aluminas by contacting crystals with polyvalent cation-containing salts in either molten or gaseous states. Additionally, laser and other optical devices utilizing these modified materials are disclosed.
Career Highlights
Farrington is associated with University Patents, Inc., where he continues to advance his research in optical materials. His work has garnered attention for its potential applications in various high-tech fields, including laser technology and advanced optical devices.
Collaborations
Farrington has collaborated with Bruce S. Dunn, a fellow researcher, to further explore the capabilities and applications of the materials developed through his patent.
Conclusion
Gregory C. Farrington's innovative work in optical materials showcases his expertise and dedication to advancing technology in this field. His contributions have the potential to impact various applications, particularly in laser and optical device development.
