Oak Ridge, TN, United States of America

Michelle D Pawel


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 20(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Michelle D. Pawel - Innovator in Neutron Detection Technology

Introduction

Michelle D. Pawel is an accomplished inventor based in Oak Ridge, Tennessee, known for her innovative contributions in the field of neutron detection. With one patent to her name, she has demonstrated a commitment to advancing technology that has significant implications for research and safety applications.

Latest Patents

Michelle's notable patent is titled "Composite solid-state scintillators for neutron detection." This invention details a composite scintillator that integrates a matrix material made from an inorganic sol-gel precursor solution. It is homogeneously doped with both a liquid scintillating material and a neutron-absorbing material. When the neutron-absorbing material interacts with a neutron, it produces particles such as electrons, protons, tritons, alpha particles, or fission fragments. The scintillator is capable of scintillating when these particles pass through it, thus making it a critical advancement in neutron detection technologies. The technology can also be applied as a thin film on substrates, coatings on optical fibers, or as a glass material.

Career Highlights

Throughout her career, Michelle has been associated with notable institutions including UT-Battelle, Inc. and Oak Ridge Associated Universities. Her experience at these organizations has allowed her to refine her skills and contribute to groundbreaking research in her field.

Collaborations

Collaborating with esteemed colleagues, such as Sheng Dai and Hee-Jung Im, Michelle has expanded her professional network and leveraged shared expertise to push the boundaries of what is possible in neutron detection and related fields.

Conclusion

Michelle D. Pawel stands out as a leading innovator in the realm of neutron detection technology. Her work not only reflects her technical skills but also her dedication to enhancing safety and research capabilities. The ongoing impact of her innovations continues to inspire future developments in the field.

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