Gyeonggi-do, South Korea

Na Rae Kang

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Na Rae Kang: Innovator in Fuel Cell Membrane Technology

Introduction: Na Rae Kang is a prominent inventor based in Gyeonggi-do, South Korea. He has made significant contributions to the field of polymer electrolytes, particularly in the development of advanced materials for fuel cell applications. With a patent to his name, Kang's work demonstrates the intricate relationship between materials science and energy technologies.

Latest Patents: Na Rae Kang holds a patent titled "Sulfonated poly(phenylene sulfide sulfone nitrile) and membrane for fuel cell thereof." This innovative invention encompasses the creation of sulfonated poly(phenylene sulfide sulfone nitrile) with a unique triple bond at both ends. Furthermore, the accompanying polymer electrolyte membrane exhibits superior mechanical properties, achieved through heat treatment that creates cross-links between the ends of the sulfonated polymer. This advancement holds promise for enhancing the performance and durability of fuel cells.

Career Highlights: Throughout his career, Na Rae Kang has been associated with several esteemed organizations, including Hyundai Motor Company and the Industry-University Cooperation Foundation of Hanyang University (IUCf-Hyu). His experiences at these institutions have equipped him with a deep understanding of both industrial and academic perspectives in his field.

Collaborations: Kang has collaborated with notable peers, including Young Moo Lee and So Young Lee, contributing to a more collaborative approach in research and development. These partnerships reflect the interdisciplinary nature of innovations in fuel cell technologies.

Conclusion: Na Rae Kang stands out as an inventor dedicated to enhancing fuel cell technology through his innovative research and patents. His work not only advances the scientific community’s understanding of polymer electrolytes but also contributes significantly to the ongoing efforts in developing sustainable energy solutions.

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