Antonio Turco
Papers
1
Total Citations
22
H-Index
1
About
Antonio Turco’s research sits at the intersection of materials science and nanotechnology, with a focus on developing advanced piezoresistive sensors for flexible and wearable electronics. His most-cited work, “Nanoarchitectonics of highly sensitive and with large working range 3D piezoresistive microporous foam based on carbon nanotubes and elastomer” (2021), exemplifies his innovative approach to creating high-performance sensing materials. In this study, Turco engineered a three-dimensional microporous foam composite by integrating carbon nanotubes into an elastomeric matrix, achieving both exceptional sensitivity and a broad working range—key attributes for next-generation tactile sensors. This contribution has garnered 22 citations, reflecting its significance in the field. Turco’s work is notable for its practical implications: the foam-based sensors are lightweight, flexible, and scalable, making them ideal for applications in health monitoring, human-machine interfaces, and soft robotics. By bridging the gap between nanoarchitectonics and real-world device performance, Turco is helping to shape the future of smart materials. His research continues to inspire new directions in the design of robust, high-sensitivity sensors that can withstand mechanical deformation while maintaining accuracy.
Research Focus
Key Achievements
Top Papers
- 1