Tokyo, Japan

Tatsuya Miyajima

USPTO Granted Patents = 7 

 

Average Co-Inventor Count = 3.8

ph-index = 2

Forward Citations = 8(Granted Patents)


Location History:

  • Chiba, JP (2004)
  • Tokyo, JP (2002 - 2024)
  • Chiyoda-ku, JP (2023 - 2024)

Company Filing History:


Years Active: 2002-2024

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7 patents (USPTO):Explore Patents

Title: Inventor Tatsuya Miyajima: Innovating Ion Exchange Membrane Technology

Introduction

Tatsuya Miyajima is an accomplished inventor based in Tokyo, Japan, known for his significant contributions to the field of ion exchange membranes. With a remarkable portfolio of seven patents, he has been instrumental in advancing technology related to redox flow batteries.

Latest Patents

Miyajima's latest patents focus on enhancing the efficiency of redox flow batteries through the innovation of ion exchange membranes. One of his notable inventions is an ion exchange membrane that can improve the current efficiency of a redox flow battery without sacrificing voltage efficiency. This membrane comprises a fluorinated polymer with sulfonic acid functional groups, designed specifically to maintain optimal performance. Furthermore, he has developed a method for producing a dry ion exchange membrane that incorporates advanced spectroscopic techniques to ensure superior quality and functionality.

Career Highlights

Throughout his career, Tatsuya Miyajima has worked with reputable companies such as AGC Inc. and Asahi Glass Company, Limited. His expertise in material science and engineering has played a crucial role in the development of innovative products within these organizations.

Collaborations

Miyajima has collaborated with esteemed colleagues, including Takuo Nishio and Atsushi Funaki. Their shared knowledge and experience have fostered an environment of creativity and innovation, leading to the development of cutting-edge technologies in the field of electrochemical applications.

Conclusion

Tatsuya Miyajima continues to push the boundaries of invention in the realm of ion exchange membranes and redox flow battery technology. His contributions are a testament to the importance of innovation in addressing modern energy challenges. As he moves forward, the impact of his work will likely resonate within both the scientific community and commercial industries.

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