This inventor holds 3 USPTO granted patents. Top assignee: Institute of Nuclear Energy Research. Active years: 2013-2014.
Location History:
- Longtan Township, Taoyuan County, TW (2013)
- Taoyuan County, TW (2014)
Company Filing History:
Years Active: 2013-2014
Title: Jin-Jenn Lin: Innovator in Gallium-68 Radioisotope Technology
Introduction
Jin-Jenn Lin is a notable inventor based in Taoyuan County, Taiwan. He has made significant contributions to the field of radioisotope technology, particularly with his work on Gallium-68 generators. His innovative approaches have led to the development of two patents that enhance the efficiency and effectiveness of radioisotope generation.
Latest Patents
Jin-Jenn Lin holds two patents, showcasing his expertise in the field. The first patent is for a Gallium-68 radioisotope generator and generating method. This invention includes a generating column filled with an ion-exchange resin that absorbs germanium-68 and Gallium-68 radioisotopes. The citrate eluent is introduced to desorb the Ga-68 radioisotope, resulting in an eluent containing Ga-68 in the form of Ga-68 citrate. The second patent pertains to a novel structure for a Ga-68 radionuclide generator. This design allows two washing solutions to pass through two Ge-68 absorbents, effectively washing out different chemical forms of the Ga-68 nuclide.
Career Highlights
Throughout his career, Jin-Jenn Lin has worked with esteemed organizations such as the Institute of Nuclear Energy Research and the Atomic Energy Council, Executive Yuan. His experience in these institutions has significantly contributed to his expertise in nuclear energy and radioisotope technology.
Collaborations
Jin-Jenn Lin has collaborated with notable colleagues, including Ming-Hsin Li and Ther-Jen Ting, who is a woman. These collaborations have fostered a productive environment for innovation and research in the field of nuclear energy.
Conclusion
Jin-Jenn Lin's contributions to Gallium-68 radioisotope technology highlight his innovative spirit and dedication to advancing the field. His patents reflect a commitment to improving radioisotope generation methods, which can have significant implications for medical and research applications.
