Company Filing History:
Years Active: 2000
Title: Innovator Spotlight: Jill K. Gregory - Pioneering Nitric Oxide Detection
Introduction
Jill K. Gregory, an accomplished inventor based in Boulder, CO, USA, has made significant contributions in the field of gas detection. Her innovative patent focuses on a critical aspect of environmental monitoring and medical diagnostics - the detection and measurement of nitric oxide.
Latest Patents
Jill holds a patent for her remarkable invention, a nitric oxide detector. This device utilizes gas-permeable capillary membrane fibers that transport a reagent solution within a plenum containing the gases to be measured. The design allows nitric oxide molecules to penetrate the fibers' walls and undergo a chemiluminescent reaction. The translucent nature of both the fibers and the plenum permits the emitted photons from the reaction to be detected accurately by a photodetector. To enhance measurement accuracy, the reagent solution is buffered at an alkaline pH and incorporates the enzyme carbonic anhydrase, which helps mitigate errors caused by carbon dioxide interference.
Career Highlights
Jill K. Gregory is a key member of 2B Technologies, Inc., where she applies her expertise in gas detection technologies. Her role at the company has been instrumental in advancing innovative solutions that meet the growing needs for accurate and reliable gas measurements.
Collaborations
Throughout her career, Jill has collaborated with notable colleagues, including Mark J. Bollinger and John William Birks. These collaborations have played a vital role in enhancing the development and implementation of groundbreaking technologies in their respective fields.
Conclusion
Jill K. Gregory is a testament to the impact of innovative thinking and dedicated research in technology. With her patented nitric oxide detector, she has paved the way for advancements in environmental and health monitoring applications, showcasing the importance of continuous innovation in improving our understanding of critical gases.