This inventor holds 2 USPTO granted patents and 2 published patent applications. Top assignee: Peking University. Active years: 2021-2026.
Company Filing History:
Years Active: 2021-2026
Title: Innovations of Yunyang Bai in Electromaterials
Introduction
Yunyang Bai is a prominent inventor based in Beijing, China. He has made significant contributions to the field of electromaterials, particularly through his innovative patent related to composite membranes. His work addresses critical challenges in material science, particularly in the context of biomedical applications.
Latest Patents
Yunyang Bai holds a patent for an "Electrified composite membrane with extracellular matrix electrical topology characteristics, and preparation method thereof." This invention resolves the technical problems associated with the poor matching of electric characteristics and natural extracellular matrix characteristics in existing materials. The electrified composite membrane is primarily composed of a ferroelectric polymer matrix and piezoelectric active fiber fillings. By regulating the draw ratio, content of piezoelectric active fiber, and thickness of the composite film, this invention achieves flexibility in film material while mimicking the electrical topological features of bionic extracellular matrix. The result is a material with proper tissue adhesion, good electric adaptability, and high clinical operability.
Career Highlights
Yunyang Bai is affiliated with Peking University, where he continues to advance research in electromaterials. His innovative approach has garnered attention in the scientific community, particularly for its potential applications in regenerative medicine and tissue engineering.
Collaborations
Yunyang Bai has collaborated with notable colleagues, including Xuliang Deng and Xuehui Zhang. Their joint efforts contribute to the advancement of research in the field of electromaterials.
Conclusion
Yunyang Bai's contributions to the field of electromaterials through his innovative patent highlight the importance of integrating electrical characteristics with natural biological properties. His work not only addresses existing challenges but also paves the way for future advancements in biomedical applications.
