Location History:
- Vancouver, CA (2015)
- Richmond, CA (2003 - 2024)
Company Filing History:
Years Active: 2003-2024
Title: Innovations of Jun Shen in Ion-Selective Electrode Technology
Introduction
Jun Shen is an accomplished inventor based in Vancouver, Canada. He has made significant contributions to the field of ion-selective electrode technology, holding a total of 3 patents. His work focuses on developing advanced sensors for measuring concentrations of various substances in mixed solution systems.
Latest Patents
One of Jun Shen's latest patents is a glass-containing pseudo-reference electrode designed for use in ion-selective electrode sensors and ion-selective field-effect transistors. This innovative pseudo-reference electrode comprises a pseudo-reference glass material backed by a silver conductor. The pseudo-reference glass material can be a chalcogenide glass or a halide glass, allowing for versatile applications in sensor technology.
Another notable patent involves a sensor for measuring the concentration of a solvent or solute in a mixed solution system. This invention features a first sensor with a hydrophilic capillary tube and a second sensor with a hydrophobic capillary tube. Both sensors are designed to measure the concentration of low molecular weight alcohols in an aqueous solution, providing accurate readings independent of the depth of dipping.
Career Highlights
Jun Shen is currently affiliated with the National Research Council of Canada, where he continues to advance his research in sensor technology. His innovative work has positioned him as a key figure in the development of ion-selective electrodes.
Collaborations
Throughout his career, Jun Shen has collaborated with notable colleagues, including Jianqin Zhou and Eben Dy. These partnerships have further enhanced his research and contributions to the field.
Conclusion
Jun Shen's innovative patents and contributions to ion-selective electrode technology demonstrate his expertise and commitment to advancing scientific research. His work continues to impact the field significantly, paving the way for future innovations.