This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Tianjin University. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: Innovations of Jingya Ye in Carbonized Wood Sponge Materials
Introduction
Jingya Ye is an innovative inventor based in Tianjin, China. He has made significant contributions to the field of material science, particularly in the development of advanced materials for environmental applications. His work focuses on creating sustainable solutions for plastic waste conversion and enhancing material properties through innovative techniques.
Latest Patents
Jingya Ye holds a patent for a "Copper-magnesium co-doped carbonized wood sponge material, preparation therefor, and application thereof, and method for converting plastics into fuel based on Fenton-like system." This patent describes a novel catalyst prepared through high-temperature pyrolysis, which involves coating wood raw material with polydopamine and loading copper and magnesium elements onto a wood sponge substrate. This innovative approach creates a unique spatial microenvironment that promotes efficient electron transfer, making it a promising solution for converting plastics into fuel.
Career Highlights
Jingya Ye is affiliated with Tianjin University, where he conducts research and develops new materials. His work has garnered attention for its potential impact on environmental sustainability and waste management. With a focus on innovative material preparation methods, he continues to push the boundaries of what is possible in material science.
Collaborations
Jingya Ye collaborates with notable colleagues, including Ning Li and Guanyi Chen. Their combined expertise enhances the research and development efforts at Tianjin University, fostering a collaborative environment that encourages innovation.
Conclusion
Jingya Ye's contributions to the field of material science, particularly through his patented innovations, highlight the importance of sustainable solutions in addressing environmental challenges. His work exemplifies the potential of innovative materials to transform waste into valuable resources.
