Sapporo, Japan

Yuki Satoh


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):

Title: A Spotlight on Inventor Yuki Satoh

Introduction

Yuki Satoh, an innovative inventor based in Sapporo, Japan, has made significant strides in the field of materials science. With a focused patent portfolio, her contributions highlight the intersection of advanced chemistry and cutting-edge technology.

Latest Patents

Satoh holds a notable patent titled "Multilayer Structure and Method for Producing Multilayer Structure." The invention provides a multilayer structure where a titanium oxide layer showcases exceptional photocatalytic activity. This entails a conductive part containing a metal element A, which is distinct from titanium and exhibits electrical conductivity. The innovative design features a titanium oxide layer that incorporates 1.0% by atomic or more of the metal element A, enhancing its application potential in various technological fields.

Career Highlights

Throughout her career, Yuki Satoh has been associated with prestigious organizations, including JFE Steel Corporation and Hokkaido University. Her experience in research and development at these institutions has been instrumental in fostering her innovative spirit and expertise in multilayer structures.

Collaborations

In her professional journey, Satoh has collaborated with esteemed colleagues such as Mikito Suto and Takeshi Suzuki. These partnerships have allowed her to exchange ideas and enhance the scope of her research, significantly contributing to advancements in photocatalytic applications and material science.

Conclusion

Yuki Satoh exemplifies the qualities of a forward-thinking inventor, making her mark in the realm of multilayer structures and photocatalytic materials. Her work not only reflects individual brilliance but also the power of collaboration and innovation within the scientific community. As her patents continue to gain recognition, the substantial impact of her inventions is poised to influence various industrial applications for years to come.

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