Tomohito Sekine

Yamagata University

Papers

17

Total Citations

360

H-Index

12

About

Tomohito Sekine is a leading figure in the development of next-generation printed electronics for soft robotics and wearable healthcare. His research centers on creating high-performance, flexible sensors and actuators using novel functional inks and scalable printing processes. Sekine’s major contributions include pioneering a brittle-stretchable conductive network for strain sensors that achieves both high sensitivity and a wide working range (68 citations), and developing low-voltage, highly pressure-sensitive printed sensors with integrated analogic amplifier circuits for healthcare monitoring (48 citations). He has also advanced soft robotics machine interfaces with microporous, fully printed pressure sensors (31 citations) and deep eutectic solvent-induced porous composites for piezoresistive sensing (27 citations). His work on ferroelectric-polymer-based soft pressure sensors (27 citations) and tunable ultrathin soft actuators for haptic devices (25 citations) demonstrates his impact in both sensing and actuation. With over 300 total citations across his top ten papers, Sekine’s innovations in printed directional bending sensors, robotic e-skin for acceleration sensing, and artificial cutaneous slip detection are shaping the future of intelligent, skin-like electronic systems for human motion detection and robotic perception.

Research Focus

Key Achievements

12
H-Index
17
Papers
360
Total Citations
21
Avg Citations/Paper
🏆 Most Cited Paper
Printed Strain Sensor with High Sensitivity and Wide Working Range Using a Novel Brittle–Stretchable Conductive Network
68 citations · 2020
📈 Most Prolific Year: 2023 (5 Papers)
🤝 Key Collaborators: 41
🏛 Institutions: Yamagata University

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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