Worcester, United Kingdom

Stephen J Till


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: Stephen J. Till – Innovator in Conducting Polymers

Introduction

Stephen J. Till, hailing from Worcester, GB, is an accomplished inventor known for his pioneering work in the field of organic semiconductor devices. With a noteworthy patent to his name, he has made significant contributions to the development of conducting polymers, which play a vital role in modern electronic applications.

Latest Patents

Stephen J. Till holds a patent relating to conducting polymers, which encompasses an organic semiconductor device consisting of a substrate with an organic layer sandwiched between electrode structures. This invention features a polymer denoted by a specific general formula, where various groups can be substituted, enhancing its functionality in electronic devices. His patent details innovative structures that include phenyl groups and other cyclic compounds, showcasing his expertise in advanced material science.

Career Highlights

Currently, Stephen is associated with Qinetiq Limited, a renowned company specializing in technology and defense solutions. In his role, he has engaged in cutting-edge research focused on materials that have the potential to revolutionize electronic manufacturing. His dedication to innovation has positioned him as a key contributor to the company's technological advancements.

Collaborations

Stephen has collaborated with esteemed coworkers including Ian Charles Sage and Emma Louise Wood. Their joint efforts in the realm of conducting polymers have further enhanced the understanding and application of organic materials in electronics, leading to fruitful results that benefit both the industry and research community.

Conclusion

Through his remarkable patent and contributions to the field, Stephen J. Till exemplifies the spirit of innovation that drives advancements in technology. His work in conducting polymers symbolizes the potential for organic materials to shape the future of electronic devices, nurturing aspirations for a more advanced technological landscape.

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