This inventor holds 1 USPTO granted patent. Top assignee: Itm Power (Research) Limited. Active years: 2016.
Company Filing History:
Years Active: 2016
Title: Innovations of Inventor Jennifer Morton: Advancements in Ionic Membrane Technology
Introduction
Jennifer Morton, based in South Yorkshire, GB, is an innovative inventor recognized for her contributions to the field of ionic polymer membranes. With a notable patent to her name, she has significantly advanced the technology that plays a crucial role in various industrial applications.
Latest Patents
Jennifer holds a patent for the preparation of ionic membranes, which outlines a comprehensive method for forming these vital materials. The patent describes a two-part approach: First, a mixture of monomers is polymerized to create an ionic polymer membrane, which is then treated with additional monomers to enhance its properties. The second aspect of the patent focuses on developing a catalyst-coated ionic polymer membrane, further extending the application possibilities of the technology. These innovations not only improve membrane performance but also expand their utility in various applications.
Career Highlights
Currently employed at ITM Power Limited, Jennifer has played an essential role in researching and developing advanced membrane technologies. Her commitment to innovation and excellence has made her an asset to her team and the wider research community.
Collaborations
Throughout her career, Jennifer Morton has collaborated with various experts, including her colleague Donald James Highgate. These partnerships often foster creative solutions and drive the advancement of current technologies, demonstrating the importance of teamwork in the innovation process.
Conclusion
In summary, Jennifer Morton’s work in ionic membrane technology represents a significant achievement in the field of materials science. Her innovative patent and commitment to research exemplify the spirit of invention and the drive for continuous improvement in technology. As she continues her work at ITM Power, her contributions are expected to lead to further advancements in this essential area of research.