Company Filing History:
Years Active: 2021
Title: Innovations of Shangyue Chen in Polymer Crystallization
Introduction
Shangyue Chen is a notable inventor based in Xiamen, China. He has made significant contributions to the field of polymer science, particularly in the area of nano-microsphere arrangement. His innovative methods have the potential to impact various applications in material science.
Latest Patents
Shangyue Chen holds a patent titled "Method for inducing ordered arrangement of nano-microspheres by means of polymer crystallization." This patent describes a method for achieving an orderly arrangement of nano-microspheres through polymer crystallization. The process involves preparing monodisperse PS-DVB nano-microspheres of different sizes using soap-free emulsion polymerization. Subsequently, PEG aqueous solutions of varying concentrations are added to induce the orderly arrangement of the nano-microspheres via solution-state PEG crystallization. The method is characterized using scanning electron microscopy and polarizing microscopy. It is noted for its simplicity and wide applicability. By modifying the arrangement of the nano-microspheres, the resulting composite material can be utilized in various fields, transforming into either thin film materials or bulk materials enhanced by the nano-microspheres.
Career Highlights
Shangyue Chen is affiliated with Xiamen University, where he continues to advance his research in polymer science. His work has garnered attention for its innovative approach to material development and its practical applications.
Collaborations
Shangyue Chen has collaborated with notable colleagues, including Lizong Dai and Jihong Zhu. Their combined expertise contributes to the advancement of research in their field.
Conclusion
Shangyue Chen's innovative methods in polymer crystallization and nano-microsphere arrangement represent significant advancements in material science. His contributions are poised to influence various applications and enhance the understanding of composite materials.