Osaka, Japan

Mashiro Yoshioka


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 1999

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1 patent (USPTO):Explore Patents

Title: The Innovations of Mashiro Yoshioka

Introduction

Mashiro Yoshioka is a prominent inventor based in Osaka, Japan. He is known for his significant contributions to the field of materials science, particularly in the development of advanced polymers. His innovative work has led to the creation of a unique patent that showcases his expertise and creativity.

Latest Patents

Yoshioka holds a patent for an aromatic polycarbodiimide and a sheet utilizing this material. This aromatic polycarbodiimide contains a siloxane bond in its polymer main chain. The invention is notable for its ability to adhere at low temperatures in a short time while exhibiting high heat resistance. Additionally, the polycarbodiimide demonstrates excellent adhesive properties to adherends such as semiconductor elements. It also possesses low hygroscopic properties and outstanding storage stability, allowing it to be stored for extended periods at normal temperatures.

Career Highlights

Mashiro Yoshioka is associated with Nitto Denko Corporation, a leading company in the field of advanced materials. His work at the company has been instrumental in pushing the boundaries of polymer technology. Yoshioka's innovative spirit and dedication to research have made him a valuable asset to his team and the industry.

Collaborations

Yoshioka collaborates with talented coworkers, including Michie Sakamoto and Amane Mochizuki. Their combined efforts contribute to the advancement of materials science and the development of new technologies.

Conclusion

Mashiro Yoshioka's contributions to the field of polymer science are significant and impactful. His innovative patent for aromatic polycarbodiimide exemplifies his commitment to advancing technology. Through his work at Nitto Denko Corporation and collaborations with skilled colleagues, Yoshioka continues to shape the future of materials science.

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