Kyoto, Japan

Kazuya Shinno


 

Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 28(Granted Patents)


Location History:

  • Uji, JP (2003)
  • Kyoto, JP (2015 - 2024)

Company Filing History:


Years Active: 2003-2024

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9 patents (USPTO):Explore Patents

Title: Kazuya Shinno: Innovator in Silane Coupling Compounds

Introduction

Kazuya Shinno is a prominent inventor based in Kyoto, Japan. He has made significant contributions to the field of medical and dental materials through his innovative patents. With a total of nine patents to his name, Shinno has established himself as a key figure in the development of silane coupling agents.

Latest Patents

Shinno's latest patents include groundbreaking work on silane coupling compounds and medical and/or dental curable compositions. One of his notable inventions is a novel silane coupling agent that enhances the affinity to radical polymerizable monomers. This innovation results in improved mechanical strength, flexibility, and durability in medical and dental applications. Another significant patent involves a diisocyanate-based radical polymerizable silane coupling compound, which also features an urethane bond. This compound is designed to provide high mechanical strength and durability when used in medical and dental curable compositions.

Career Highlights

Throughout his career, Kazuya Shinno has worked with reputable companies such as Kabushikikaisha Shofu and Shofu Inc. His experience in these organizations has allowed him to refine his expertise in the development of advanced materials for medical and dental use.

Collaborations

Shinno has collaborated with notable colleagues, including Kenzo Yamamoto and Toshiyuki Nakatsuka. These partnerships have contributed to the advancement of his research and the successful development of his patented technologies.

Conclusion

Kazuya Shinno's innovative work in silane coupling compounds has significantly impacted the medical and dental fields. His contributions continue to enhance the quality and performance of curable compositions, showcasing his dedication to advancing technology in these critical areas.

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