This inventor holds 2 USPTO granted patents. Top assignee: Itm Power (Research) Limited. Active years: 2017.
Location History:
- Sheffield, GB (2017)
- South Yorkshire, GB (2017)
Company Filing History:
Years Active: 2017
Title: Innovations of Daniel Greenhalgh
Introduction
Daniel Greenhalgh is an accomplished inventor based in Sheffield, GB. He has made significant contributions to the field of polymer science, particularly in the development of hydrophilic polymer membranes. With a total of two patents to his name, Greenhalgh's work is paving the way for advancements in electrochemical applications.
Latest Patents
Greenhalgh's latest patents include a method for the formation of hydrophilic polymer membranes using a Bronsted base. This innovative method involves reacting a monomer with an acid group with a Bronsted base to create an ionic liquid, which is then polymerized with at least one other monomer. After polymerization, the ionic liquid is converted back to the acid group, resulting in unique hydrophilic polymers and membrane electrode assemblies. His second patent focuses on high water-content membranes, which can be hydrated to achieve a water content of at least 65%. This invention also encompasses methods for forming membrane electrode assemblies and electrochemical cells.
Career Highlights
Greenhalgh is currently employed at ITM Power Limited, a research-focused company that specializes in hydrogen energy solutions. His work at ITM Power has allowed him to explore innovative approaches to polymer technology, contributing to the development of sustainable energy solutions.
Collaborations
Throughout his career, Greenhalgh has collaborated with notable colleagues, including Rachel Lister and Ryan Malcolmson. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas.
Conclusion
Daniel Greenhalgh's contributions to the field of polymer science and his innovative patents highlight his role as a leading inventor in the industry. His work continues to influence advancements in hydrophilic polymers and electrochemical applications.