This inventor holds 1 USPTO granted patent. Top assignee: Pimems, Inc.. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: Innovations of Shannon Gott in Battery Technology
Introduction
Shannon Gott is an accomplished inventor based in Santa Barbara, CA (US). She has made significant contributions to the field of battery technology, particularly with her innovative work on microfabricated batteries. Her expertise and dedication to advancing energy storage solutions have positioned her as a notable figure in the industry.
Latest Patents
Shannon Gott holds a patent for a MEMS anode battery. The present application discloses a microfabricated micron-scale battery having excellent performance attributes. The battery utilizes a titanium anode that is etched to form a plurality of raised features. These raised features are coated conformally with a highly conductive metal. A layer of titanium is then formed over the highly conductive metal, which is subsequently oxidized to provide further small-scale roughness. This roughness increases the surface area, improving the uptake of lithium ions by the anode. Additionally, the battery can be combined with a titanium thermal ground plane to enhance performance by effectively removing heat from the battery.
Career Highlights
Shannon Gott is currently employed at Pimems, Inc., where she continues to develop innovative battery technologies. Her work has garnered attention for its potential to revolutionize energy storage solutions. With a focus on performance and efficiency, Shannon's contributions are paving the way for advancements in the field.
Collaborations
Shannon collaborates with her coworker, Payam Bozorgi, to further enhance their research and development efforts in battery technology.
Conclusion
Shannon Gott's innovative work in the field of battery technology, particularly with her MEMS anode battery, showcases her commitment to advancing energy storage solutions. Her contributions are significant and have the potential to impact the future of battery performance and efficiency.