Sakura, Japan

Akihiro Koike


 

Average Co-Inventor Count = 2.7

ph-index = 1


Company Filing History:


Years Active: 2025

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2 patents (USPTO):Explore Patents

Title: Akihiro Koike: Innovator in Molybdenum Disulfide Technologies

Introduction

Akihiro Koike is a prominent inventor based in Sakura, Japan. He has made significant contributions to the field of materials science, particularly in the development of molybdenum disulfide particles and their applications in lubricating compositions. With a total of 2 patents, his work has garnered attention for its innovative approaches to improving friction and wear resistance.

Latest Patents

Koike's latest patents include advancements in molybdenum disulfide particles and a particle-containing grease composition. The first patent focuses on molybdenum disulfide particles that feature both a 2H crystal structure and a 3R crystal structure. Notably, the presence ratio of the 3R crystal structure is 10% or more, with a crystallite size ranging from 1 nm to 150 nm, as determined by extended-type Rietveld analysis. The second patent presents a particle-containing grease composition designed to enhance friction and wear resistance properties. This composition includes base oil, a thickener, and molybdenum disulfide particles, with a median diameter of the particles determined to be between 10 nm and less than 450 nm.

Career Highlights

Koike is currently associated with Dic Corporation, where he continues to innovate and develop new technologies. His work has been instrumental in advancing the understanding and application of molybdenum disulfide in various industrial contexts.

Collaborations

Throughout his career, Koike has collaborated with notable colleagues, including Yusuke Kano and Hironobu Matsueda. These partnerships have contributed to the successful development of his patented technologies.

Conclusion

Akihiro Koike stands out as a key figure in the field of materials science, particularly for his innovative work with molybdenum disulfide. His contributions continue to influence advancements in lubrication technology and materials engineering.

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