This inventor holds 2 USPTO granted patents and 2 published patent applications. Top assignee: University of Michigan. Active years: 2025-2026.
Company Filing History:
Years Active: 2025-2026
Title: Innovations by Tianhan Gao in Electrochemical Cells
Introduction
Tianhan Gao is an accomplished inventor based in Ann Arbor, MI (US). He has made significant contributions to the field of electrochemical cells, particularly through his innovative patent that enhances the performance of these systems. His work is primarily associated with the University of Michigan, where he collaborates with other researchers to advance technology in this area.
Latest Patents
Tianhan Gao holds a patent titled "Electrochemical cell including piezoelectric structure that reduces solid-electrolyte interphase layer growth on electrode, and method for using the same." This patent describes a system and method designed to improve the capacity, energy, and cycle life of an electrochemical cell. The invention utilizes a structure comprising a piezoelectric material that interacts with the solid-electrolyte interphase layer formed on the anode. The electrochemical cell includes an anode, a cathode, and an electrolyte, with the piezoelectric structure enhancing the overall performance of the cell.
Career Highlights
Throughout his career, Tianhan Gao has focused on developing innovative solutions that address challenges in energy storage and conversion. His research has led to advancements in the efficiency and longevity of electrochemical cells, making significant impacts in the field of energy technology.
Collaborations
Tianhan Gao works closely with his coworker, Wei Lu, at the University of Michigan. Their collaboration has fostered a productive research environment that encourages innovation and the development of new technologies.
Conclusion
Tianhan Gao's contributions to the field of electrochemical cells exemplify the importance of innovation in advancing energy technologies. His patent highlights the potential for piezoelectric materials to enhance the performance of electrochemical systems, paving the way for future advancements in energy storage solutions.
