Papers
9
Total Citations
804
H-Index
9
About
Xuecheng Qu is an emerging researcher at the forefront of flexible electronics, smart materials, and human-machine interaction technologies. His work spans several interconnected domains, including self-healing hydrogels, stretchable sensors, triboelectric nanogenerators, and bioinspired electronic skin — fields collectively driving the next generation of wearable and robotic systems. Qu's most celebrated contribution, "Ultra-Stretchable and Fast Self-Healing Ionic Hydrogel in Cryogenic Environments for Artificial Nerve Fiber" (2022, 270 citations), demonstrated a breakthrough material capable of maintaining self-healing properties even at sub-zero temperatures, a critical advancement for biomimetic intelligent robots operating in extreme conditions. His development of PVA/PEI-based conductive elastomers (2020, 169 citations) further established his reputation for engineering multifunctional, environmentally conscious materials for healthcare monitoring and soft robotics. Beyond materials science, Qu has made significant strides in self-powered sensing systems, including triboelectric nanogenerators for tactile sensing, energy harvesting, and rehabilitation monitoring. His research into multidimensional force detection and human-machine interfaces (2022, 88 citations) addresses real-world challenges in prosthetics and robotic dexterity. With a rapidly growing citation record exceeding 800 citations across fewer than a decade of publications, Qu represents a dynamic voice shaping the future of intelligent, adaptive, and self-sustaining electronic systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Customization of Conductive Elastomer Based on PVA/PEI for Stretchable Sensors169 citations · 2020
- 3Self-Powered Force Sensors for Multidimensional Tactile Sensing88 citations · 2022
- 4
- 5A Self‐Powered Triboelectric Hybrid Coder for Human–Machine Interaction69 citations · 2022
- 6
- 7
- 8Development and application of nanogenerators in humanoid robotics24 citations · 2023
- 9