Huntington Station, NY, United States of America

Mingxing Li


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Mingxing Li in Optoelectronics

Introduction

Mingxing Li, a notable inventor based in Huntington Station, NY, has made significant strides in the field of optoelectronics. With a focus on enhancing the properties of photodetectors, Li's work exemplifies the intersection of innovation and practical application in modern technology.

Latest Patents

Mingxing Li holds a patent for "Conductive polymer nanowires—graphene hybrids with improved optoelectronic properties." This innovative patent claims a photodetector that incorporates graphene and poly(3-hexylthiopene) (P3HT) nanowires. Additionally, it outlines a method for manufacturing this hybrid photodetector, which offers enhanced performance in optoelectronic applications.

Career Highlights

Li's career is marked by his position at Brookhaven Science Associates, LLC, where he contributes to cutting-edge research and development projects. His focus on the integration of advanced materials into photodetection technologies has positioned him as a valuable asset in the field. The impact of his work is evident in the growing interest in hybrid materials for optoelectronic devices.

Collaborations

During his impactful career, Mingxing Li has collaborated with several esteemed colleagues, including Mircea Cotlet. Their partnership fosters a productive environment for innovation, further propelling advancements in their field. Together, they explore new methods and materials that could transform the future of optoelectronics.

Conclusion

Mingxing Li's contributions to the field of optoelectronics, particularly through his patented innovations, underscore the importance of collaboration and research in technological advancement. His work at Brookhaven Science Associates, LLC, not only showcases his inventive spirit but also illustrates the potential of hybrid materials in developing next-generation devices. As the field continues to evolve, Li's pioneering advancements will likely inspire future innovations in optoelectronic applications.

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