Seoul, South Korea

Hyo-Jin Ahn


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Hyo-Jin Ahn in Catalyst Development

Introduction: Hyo-Jin Ahn, an inventive mind based in Seoul, South Korea, has made significant strides in the field of catalyst technology. With a focus on sustainable energy solutions, Ahn has dedicated his research to the development of non-platinum catalysts for oxygen reduction electrodes, a key component in fuel cell technology.

Latest Patents: Ahn holds a patent titled "Catalyst for oxygen reduction electrode and method for manufacturing same." This invention introduces a non-platinum catalyst where iron nanoparticles are carefully dispersed in nitrogen-doped mesoporous carbon nanofibers. Notably, the iron nanoparticles are designed such that their surfaces are at least partially exposed to the exterior, enhancing the catalyst's effectiveness. Furthermore, the patent outlines a method for producing this innovative catalyst utilizing electrospinning paired with hydrogen activation reactions, presenting a promising alternative for sustainable fuel cell applications.

Career Highlights: Hyo-Jin Ahn currently serves at the Foundation for Research and Business under Seoul National University of Science and Technology. His role at this prestigious institution allows him to blend academic research with practical applications, pushing the boundaries of catalyst innovation.

Collaborations: Ahn collaborates closely with fellow researchers Geon-Hyoung An and Eun-Hwan Lee, combining their expertise to advance their projects in catalyst development. This teamwork not only enhances the research output but also fosters a rich environment of innovation and creativity.

Conclusion: Hyo-Jin Ahn's contributions to the field of catalyst technology exemplify the spirit of innovation that drives research and development. His patented work on a non-platinum catalyst serves as a cornerstone for future advancements in fuel cell technology. Ahn's collaboration with his peers further underscores the importance of teamwork in the scientific community, highlighting how innovative breakthroughs can arise from shared knowledge and efforts.

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