Funabashi, Japan

Miki Meguro



Average Co-Inventor Count = 5.6

ph-index = 1


Company Filing History:


Years Active: 2024-2025

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3 patents (USPTO):Explore Patents

Title: Miki Meguro: Innovator in Catalytic Technology

Introduction

Miki Meguro is a prominent inventor based in Funabashi, Japan. She has made significant contributions to the field of catalytic technology, particularly in the development of advanced materials for batteries and catalysts. With a total of three patents to her name, her work focuses on enhancing the performance and durability of these essential components.

Latest Patents

Miki Meguro's latest patents include innovative designs for a metal-supported catalyst, a battery electrode, and a battery. Each of these inventions demonstrates both excellent catalytic activity and durability. The metal-supported catalyst features a carbon carrier and platinum particles that serve as catalyst metal particles. These platinum particles consist of pure platinum and platinum alloy particles, with a specific weight ratio that optimizes performance. Additionally, her work on the metal-loaded catalyst includes detailed specifications regarding pore sizes and noble metal content, ensuring high efficiency in catalytic applications.

Career Highlights

Throughout her career, Miki Meguro has been associated with Nisshinbo Holdings Inc., where she has played a crucial role in advancing research and development in her field. Her innovative approach and dedication to improving catalytic materials have positioned her as a leader in the industry.

Collaborations

Miki Meguro has collaborated with notable colleagues, including Takeaki Kishimoto and Takuya Ishizuka. These partnerships have fostered a collaborative environment that encourages the exchange of ideas and expertise, further enhancing the quality of their research.

Conclusion

Miki Meguro's contributions to catalytic technology and battery materials highlight her innovative spirit and commitment to excellence. Her patents reflect a deep understanding of the complexities involved in creating efficient and durable components for modern applications.

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