Osaka, Japan

Saori Fukuzaki

USPTO Granted Patents = 1 

Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: **Innovator Spotlight: Saori Fukuzaki**

Introduction

Saori Fukuzaki is an accomplished inventor based in Osaka, Japan, known for her contributions to the field of ion conductivity through innovative materials. With a focus on creating composite particles that enhance the performance of various applications, Fukuzaki has gained recognition in her industry.

Latest Patents

Fukuzaki holds a patent for "Ion conductive organic-inorganic composite particles, particle-containing resin composition and ion conductive molded article." This invention involves ion conductive organic-inorganic composite particles that feature an organic group on the surface of inorganic particles. The configuration prevents direct contact between inorganic particles through steric hindrance from the organic group, which includes an ion conductive group. This unique design contributes to advancements in materials that require improved ionic conductivity.

Career Highlights

Saori Fukuzaki is associated with Nitto Denko Corporation, where she has applied her expertise in material science to develop innovative solutions. Her work focuses on creating materials that can enhance the performance of various technologies, particularly in environments where ionic conductivity is crucial.

Collaborations

Throughout her career, Fukuzaki has collaborated with talented colleagues, including Yoshiharu Hatakeyama and Hideyuki Emori. These collaborations have led to valuable insights and advancements in her field, underscoring the importance of teamwork in the innovative process.

Conclusion

Saori Fukuzaki exemplifies the spirit of innovation through her dedication to advancing materials science. With her patent on ion conductive composite particles, she has made significant contributions that may pave the way for future advancements in technology. Her work not only reflects her individual talents but also highlights the collaborative efforts that drive innovation in the industry.

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