Company Filing History:
Years Active: 2021-2024
Title: Xuyuan Chen: Innovator in On-Chip Supercapacitor Technology
Introduction
Xuyuan Chen is a prominent inventor based in Blommenholm, Norway. He has made significant contributions to the field of on-chip supercapacitor technology, holding a total of 2 patents. His innovative work focuses on enhancing energy storage solutions through advanced materials and methods.
Latest Patents
Xuyuan Chen's latest patents include groundbreaking inventions that improve the efficiency and functionality of on-chip supercapacitors. The first patent, titled "Deposited carbon film on etched silicon for on-chip supercapacitor," describes an on-chip supercapacitor that consists of a silicon substrate and a porous carbon layer. This carbon layer incorporates pseudocapacitive materials, which enhance the supercapacitor's performance. The second patent, "On-chip supercapacitor with silicon nanostructure," details an on-chip supercapacitor featuring an electrode made of one-dimensional silicon nanostructures coated with a layer of titanium nitride. This design is further enhanced by a second layer of manganese dioxide, which is deposited on the first layer, providing a novel approach to supercapacitor electrode construction.
Career Highlights
Xuyuan Chen is affiliated with the University of Southeastern Norway, where he continues to advance research in energy storage technologies. His work has garnered attention for its potential applications in various electronic devices, making significant strides in the field of energy efficiency.
Collaborations
Xuyuan collaborates with esteemed colleagues, including Pai Lu and Per Alfred Øhlckers, who contribute to his research endeavors and help drive innovation in the field.
Conclusion
Xuyuan Chen's contributions to on-chip supercapacitor technology exemplify his commitment to advancing energy storage solutions. His innovative patents and collaborative efforts position him as a key figure in the field, paving the way for future developments in energy efficiency.