Company Filing History:
Years Active: 2020
Title: **The Innovative Contributions of Daniel Bélanger**
Introduction
Daniel Bélanger, an inventive mind hailing from Saint-Hubert, Canada, has made a significant impact in the field of electrochemistry through his innovative approach to protecting electrode materials against moisture. His work revolves around enhancing the performance and longevity of electrochemically active materials.
Latest Patents
Bélanger holds a notable patent titled "Process for protecting electrode materials against moisture." This patent describes a groundbreaking method for modifying the surface of carbon-coated electrochemically active materials, particularly complex oxides like olivine-type cathode materials. The innovative process enhances the hydrophobic characteristics of these materials, achieving this through the modification of the surface and the grafting of specific groups on the carbon surface using diazonium chemistry. This involves spontaneous grafting of aryl ions, which are generated in situ by the diazotization of an arylamine compound.
Career Highlights
Throughout his career, Bélanger has contributed to renowned organizations such as Transfert Plus, S.E.C. and Hydro-Québec. His experiences at these companies have allowed him to refine his expertise in electrochemistry and deepen his understanding of material science. His efforts have paved the way for advancements in battery technology and energy storage solutions.
Collaborations
Daniel Bélanger has collaborated with several distinguished professionals, including coworkers such as Nicolas Delaporte and Karim Zaghib. These collaborations have facilitated the exchange of ideas and have been instrumental in driving forward their mutual goals in research and development within the electrochemistry domain.
Conclusion
In summary, Daniel Bélanger's innovative methods for enhancing electrode materials illustrate his profound knowledge and commitment to advancing electrochemical technology. His patent, unique career journey, and collaborations highlight his valuable contributions to the field, ensuring that his work will continue to influence future innovations in energy storage and materials science.