Gunma, Japan

Ikuo Ishibori

USPTO Granted Patents = 1 


Average Co-Inventor Count = 12.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Ikuo Ishibori: Innovator in Porous Polymer Film Technology

Introduction

Ikuo Ishibori, an accomplished inventor based in Gunma, Japan, boasts a significant contribution to the field of materials science. His innovative patent involves a method for producing porous polymer films, which has a wide range of applications in various industries.

Latest Patents

Ikuo Ishibori holds one notable patent titled "Method for producing porous polymer film and porous polymer film." This method involves irradiating a strip-shaped polymer film with an ion beam while moving the film transversely, resulting in a polymer that has interacted with ions. This process is followed by chemically etching the film to create openings or through holes that correspond to the ion tracks. The ion beam is uniquely produced by folding a tail of an original beam inward toward its center through nonlinear focusing, ensuring a maximum intensity at the beam's center.

Career Highlights

Ishibori's work at Nitto Denko Corporation has played a pivotal role in advancing polymer technologies. His patented method for producing porous polymer films not only highlights his innovative spirit but also underscores his commitment to pushing the boundaries of material engineering.

Collaborations

Throughout his career, Ishibori has collaborated with notable colleagues, including Satoru Furuyama and Yozo Nagai. These partnerships have facilitated a dynamic exchange of ideas and expertise, contributing to the advancements of their collective research and development efforts.

Conclusion

Ikuo Ishibori's contributions to the field of polymer science demonstrate his innovative approach and commitment to quality in research and development. His patented method for producing porous polymer films serves as a testament to his remarkable skills as an inventor, making significant strides in material processing technologies.

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