Company Filing History:
Years Active: 2021
Title: The Innovative Contributions of Sophie Chazelle
Introduction
Sophie Chazelle is a notable inventor based in Vourey, France. She has made significant contributions to the field of energy storage, particularly in the development of advanced lithium-ion battery technologies. Her innovative work has led to the creation of a patent that enhances the performance and efficiency of these batteries.
Latest Patents
Sophie Chazelle holds a patent for an electrode designed for lithium-ion batteries. This invention features a binder formed from a blend of two polymers, with the first polymer being a polyacrylate or one of its derivatives, and the second polymer being either a second polyacrylate or carboxymethyl cellulose. The electrode includes an active material made from silicon, a conductive agent, and a binder mixture that optimizes the battery's performance. The first polymer has a molecular weight ranging from 150,000 g/mol to 400,000 g/mol, while the second polymer's molecular weight ranges from 650,000 g/mol to 4,000,000 g/mol. This innovative electrode design aims to improve the efficiency and longevity of lithium storage batteries.
Career Highlights
Throughout her career, Sophie has worked with prominent organizations such as the Commissariat à l'Énergie Atomique et aux Énergies Alternatives and Umicore. Her experience in these institutions has allowed her to collaborate with leading experts in the field of energy storage and battery technology.
Collaborations
Sophie Chazelle has collaborated with notable colleagues, including Willy Porcher and Frédéric Barbier. These partnerships have contributed to her innovative research and development efforts in the battery technology sector.
Conclusion
Sophie Chazelle's contributions to lithium-ion battery technology exemplify her commitment to innovation in energy storage solutions. Her patent and collaborations highlight her role as a significant figure in the field, paving the way for advancements in battery efficiency and performance.