This inventor holds 1 USPTO granted patent. Top assignee: North China Electric Power University. Active years: 2018.
Company Filing History:
Years Active: 2018
Title: Meicheng Li: Innovator in Fluorine-Doped Lamellar Black Titanium Dioxide Nano Materials
Introduction
Meicheng Li is a prominent inventor based in Beijing, China. He has made significant contributions to the field of materials science, particularly in the development of advanced nano materials. His innovative work has led to the creation of a unique preparation method for fluorine-doped lamellar black titanium dioxide nano materials.
Latest Patents
Meicheng Li holds a patent for the "Preparation method of fluorine-doped lamellar black titanium dioxide nano material." This method involves mixing a solution of tetra-n-butyl titanate, n-propanol, and hydrofluoric acid, followed by stirring the solutions for a specified duration. The mixture is then transferred into an autoclave, where it reacts at a controlled temperature for a designated period. After the reaction, the sample is washed and dried, and subsequently heated in a protective atmosphere to produce the fluorine-doped lamellar black titanium dioxide nano materials. These materials exhibit superior optical absorption and electron transport performances, making them valuable for various applications.
Career Highlights
Meicheng Li is affiliated with North China Electric Power University, where he continues to advance his research in materials science. His work has garnered attention for its innovative approach and practical applications in the field.
Collaborations
Meicheng Li collaborates with notable colleagues, including Jiewei Chen and Yancong He, who contribute to his research endeavors and help further the development of advanced materials.
Conclusion
Meicheng Li's contributions to the field of nano materials, particularly through his patented preparation method, highlight his role as an influential inventor. His work not only enhances the understanding of fluorine-doped lamellar black titanium dioxide but also paves the way for future innovations in materials science.