Xenofon Karagiorgis
Papers
3
Total Citations
23
H-Index
2
About
Xenofon Karagiorgis is an emerging researcher working at the intersection of flexible electronics, soft robotics, and advanced manufacturing, with a particular focus on developing next-generation tactile and pressure sensing technologies. His most impactful contributions center on the design and fabrication of soft capacitive pressure sensors built from elastomeric foam composites, leveraging cutting-edge additive manufacturing techniques such as direct ink writing and 3D printing. These innovations address critical demands in robotics, wearable technology, and interactive systems, where robust, conformable, and scalable sensing solutions are essential. His 2022 paper on 3D-printed elastomer foam-based soft capacitive pressure sensors has garnered 13 citations, establishing him as a credible voice in the tactile sensing community, while his follow-up 2023 work further refines manufacturing scalability. Beyond pressure sensing, Karagiorgis has also contributed to the field of ultra-thin chip technology, exploring silicon-based flexible electronics thinner than 50 micrometers for high-performance semi-transparent applications — broadening his relevance to future wearable and implantable device ecosystems. Though early in his career, his interdisciplinary approach and practical focus on manufacturable solutions position him as a promising contributor to the rapidly evolving landscape of flexible and soft electronics.
Research Focus
Key Achievements
Top Papers
- 13D-printed elastomer foam-based soft capacitive pressure sensors13 citations · 2022
- 2
- 3