Tianci Huang
Papers
5
Total Citations
102
H-Index
5
About
Tianci Huang is pioneering the fusion of bio-inspired design and flexible electronics to create artificial sensory systems that replicate—and even enhance—human touch and temperature perception. His research centers on intelligent tactile sensors, neuromorphic nociceptors, and closed-loop haptic-thermal interfaces for next-generation wearable devices and embodied robotics. Huang’s major contributions include developing a neuro-inspired thermoresponsive nociceptor that mimics biological pain-sensing pathways (48 citations), and body-integrated all-textile pressure sensors that achieve ultrasensitive, skin-like tactile detection (20 citations). He has also advanced flexible intelligent sensing patches capable of simultaneous augmented tactile and thermal perception, and pioneered a closed-loop haptic-thermal system using memristor-based spiking neurons for neuromorphic intelligence (8 citations). His 2025 work on flexible tactile sensors for intelligent interfaces (15 citations) addresses critical challenges in adaptability and feedback for healthcare and human-robot interaction. With a rapidly growing citation record and a portfolio of highly innovative, application-driven studies, Huang is establishing himself as a leading voice in the emerging field of neuromorphic wearable electronics.
Research Focus
Key Achievements
Top Papers
- 1Neuro-inspired thermoresponsive nociceptor for intelligent sensory systems48 citations · 2023
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- 3Flexible and Wearable Tactile Sensors for Intelligent Interfaces15 citations · 2025
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