Jonathan Stringer
Papers
1
Total Citations
63
H-Index
1
About
Dr. Jonathan Stringer is a leading figure in advanced manufacturing and functional materials, with a primary focus on printed electronics and soft robotics. His most impactful work centers on developing novel fabrication strategies for highly stretchable and wearable sensors, a critical need for next-generation human-machine interfaces. In his highly cited 2018 study (63 citations), Dr. Stringer pioneered a method for creating capacitive sensors using printed carbon black electrodes on a barium titanate elastomer composite. This breakthrough directly addressed the challenge of maintaining sensor performance under extreme deformation, demonstrating a robust, scalable approach for integrating conductive and dielectric materials into soft, stretchable substrates. By combining materials science with additive manufacturing, his research has provided a foundational framework for creating durable, high-performance sensors capable of withstanding the mechanical demands of real-world wearable applications. Dr. Stringer’s work is instrumental in bridging the gap between laboratory-scale prototypes and practical, manufacturable devices for soft robotics and wearable health monitoring, establishing him as a key innovator in the field of functional printed electronics.
Research Focus
Key Achievements
Top Papers
- 1