Suita, Japan

Hideyuki Kanbe


Average Co-Inventor Count = 3.0

ph-index = 2

Forward Citations = 39(Granted Patents)


Location History:

  • Suita, JP (1994)
  • Izumiotsu, JP (1997)

Company Filing History:


Years Active: 1994-1997

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2 patents (USPTO):Explore Patents

Title: The Innovative Mind of Hideyuki Kanbe

Introduction

Hideyuki Kanbe, a creative inventor based in Suita, Japan, is recognized for his contributions to the field of chemical engineering. With two patents to his name, Kanbe has developed innovative processes that advance the production of important chemical compounds.

Latest Patents

Kanbe’s recent patents include a groundbreaking method for the production of N-vinyl compounds and a process for preparing isocyanates. The N-vinyl compound production method involves gas phase intramolecular alcohol elimination, allowing for direct conversion of an N-(-alkoxyalkyl) compound to an N-vinyl compound in a single step. This approach not only eliminates the need for solvents or auxiliary raw materials but also ensures a safe and waste-free production environment. Additionally, his method for preparing isocyanates utilizes the thermal decomposition of carbamates in the presence of sintered oxides, consisting of elements such as boron and aluminum, thereby enhancing efficiency in chemical synthesis.

Career Highlights

Kanbe is currently employed at Nippon Shokubai Co., Ltd., a prominent company in the chemical industry. His role involves significant research and development activities, focusing on the inventive processes that drive innovation within the company and enhance their product offerings.

Collaborations

Working alongside him are notable colleagues, Yuuji Shimasaki and Akira Kurusu. Their collaborative efforts in research have been instrumental in refining and implementing the innovative processes that Kanbe has developed.

Conclusion

Hideyuki Kanbe’s contributions to chemical engineering exemplify the spirit of innovation through his inventive processes that address practical challenges in production. His work continues to influence both academia and industry, solidifying his role as a leading figure in the field of chemical inventions.

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