Kofu, Japan

Jyunpei Miyake


Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Jyunpei Miyake: Innovator in Cation Exchange Technologies

Introduction

Jyunpei Miyake, a notable inventor based in Kofu, Japan, has made significant contributions to the field of fuel cell technology. His inventive prowess is encapsulated in a pivotal patent concerning cation exchange resins and membranes, which hold substantial implications for energy efficiency.

Latest Patents

Miyake's primary patent revolves around a cation exchange resin, specifically designed for utilization in cation exchange membranes and electrolyte membranes for fuel cells. The invention offers a unique combination of divalent hydrophobic and hydrophilic units, connected through carbon-carbon bonds, enhancing their functional properties. The hydrophilic groups, which may consist of single or multiple aromatic rings, contain cation exchange groups that significantly improve the performance of fuel cells.

Career Highlights

Throughout his career, Jyunpei Miyake has been affiliated with prestigious institutions including the University of Yamanashi and Takahata Precision Co., Ltd. His work in these organizations has enabled him to advance research in materials used for fuel cells, positioning him as an influential figure in innovation within this field.

Collaborations

Miyake's collaborative network includes esteemed colleagues such as Kenji Miyatake and Makoto Uchida. These partnerships have undoubtedly enhanced the quality and impact of his research endeavors in cation exchange technologies.

Conclusion

Jyunpei Miyake's contributions to the advancement of cation exchange resins and membranes underscore the transformative potential of his innovations in fuel cell technology. His dedication to research and development reflects a commitment to enhancing sustainable energy solutions. As the world moves towards more eco-friendly energy sources, Miyake’s inventions are poised to play a crucial role in this transition.

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