Miyagi, Japan

Kenichiro Komatsu


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Exploring the Innovations of Kenichiro Komatsu

Introduction

Kenichiro Komatsu, an inventive mind from Miyagi, Japan, is recognized for his significant contributions to the field of electrochemical devices. With a focus on improving electric double-layer capacitors, his innovative approach has the potential to advance the performance of energy storage solutions.

Latest Patents

Komatsu holds a notable patent for an electrolytic solution used in electric double-layer capacitors. The innovation revolves around creating a capacitor that surpasses the limitations of prior art utilizing a liquid electrolyte solely composed of an ionic liquid. His design incorporates an atom encapsulated fullerene or an atom encapsulated fullerene salt within the electrolyte, allowing for enhancements in electrostatic capacitance and rated voltage. Notably, this versatile electrolytic solution can be in either liquid or solid form, expanding the applicability of the technology.

Career Highlights

Over the years, Kenichiro Komatsu has been associated with reputable institutions, including Idea International Inc. and Tohoku University. His work at these organizations provided a foundation for his innovative research, particularly in the development of advanced capacitor technologies.

Collaborations

During his career, Komatsu has collaborated with notable colleagues like Eunsang Kwon and Yasuhiko Kasama. These partnerships have fostered a creative environment that has propelled the advancement of electrochemical devices and broadened the scope of their research endeavors.

Conclusion

Kenichiro Komatsu's contributions to the field of electrochemical energy storage are a testament to his innovative spirit and dedication to advancing technology. His patented work not only enhances the performance of electric double-layer capacitors but also exemplifies the potential for future developments in this critical area of energy storage.

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