This inventor holds 1 USPTO granted patent. Top assignee: Chang Gung University. Active years: 2012.
Data source: USPTO (United States Patent and Trademark Office) public patent records. Weekly synchronization. How IDiyas builds this profile
Company Filing History:
Years Active: 2012
Title: Innovations of Ruey-Chi Hsu in Conductive Polymers
Introduction
Ruey-Chi Hsu is a notable inventor based in Tao-Yuan, Taiwan. He has made significant contributions to the field of conductive polymers, particularly through his innovative patent. His work focuses on enhancing the properties of polyaniline blends, which have various applications in biomedical materials.
Latest Patents
Ruey-Chi Hsu holds a patent for "Water-soluble self-acid-doped polyaniline blends." This invention provides a blend comprising a 70-90% weight percentage of a polyaniline derivative and 10-30% weight percentage of at least one water-soluble polymer. The blend is designed to produce conductive polymer films and/or conductive-polymer composite films. The invention enhances the mechanical properties and the coating-to-substrate adhesion of these films while increasing their conductivity. Additionally, the blend is biotoxicity-free and possesses free radical-capture capability, making it suitable for use as a biocompatible and conductive biomedical material.
Career Highlights
Ruey-Chi Hsu is affiliated with Chang Gung University, where he continues to advance research in the field of conductive materials. His innovative approach to blending polyaniline with water-soluble polymers has opened new avenues for applications in various industries.
Collaborations
Ruey-Chi Hsu has collaborated with notable colleagues, including Mu-Yi Hua and Hung-Wei Yang. These collaborations have contributed to the development and refinement of his innovative ideas in conductive polymers.
Conclusion
Ruey-Chi Hsu's work in developing water-soluble self-acid-doped polyaniline blends represents a significant advancement in the field of conductive materials. His contributions not only enhance the mechanical and conductive properties of polymers but also pave the way for biocompatible applications in biomedical fields.
Data source: USPTO (United States Patent and Trademark Office) public patent records. Weekly synchronization. How IDiyas builds this profile