Evanston, IL, United States of America

Jingmei Shen


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: **Jingmei Shen: Innovator in Thermally Responsive Materials**

Introduction

Jingmei Shen, based in Evanston, IL, is a prominent inventor who has made significant advancements in the field of thermally responsive materials. With one patent to his name, he has contributed to the development of innovative solutions that have promising applications in various technologies, including batteries.

Latest Patents

Jingmei Shen holds a patent titled "Polymer Functionalized Graphene Oxide and Thermally Responsive Ion Permeable Membranes Made Therefrom." This invention encompasses thermally responsive materials and porous membranes that incorporate these materials, enhancing the performance of batteries by acting as thermally responsive separation membranes. The thermally responsive materials feature upper critical solution temperature (UCST) polymers that are covalently bound to a support substrate, providing unique properties for advanced applications.

Career Highlights

Currently, Jingmei Shen is affiliated with Northwestern University, where he engages in research and development related to materials science. His work focuses on creating advanced materials that can significantly impact energy storage solutions and other critical applications.

Collaborations

Throughout his career, Jingmei Shen has collaborated with notable researchers, including Harold H. Kung and Mayfair C. Kung, to push the boundaries of materials innovation. These collaborations have led to fruitful research outcomes and a deeper understanding of the integration of advanced materials in technological applications.

Conclusion

Jingmei Shen's contributions to the field of thermally responsive materials represent significant strides toward innovative solutions in energy storage and beyond. As an inventor, his work continues to impact research and development, paving the way for future technological advancements in materials science.

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