Papers
5
Total Citations
79
H-Index
5
About
Guanjun Liu is a multidisciplinary researcher whose work spans flexible electronics, wearable sensing technologies, and robotics. His most significant contributions lie in the development of advanced strain sensors and human-computer interfaces, where he has pioneered innovative material combinations to push the boundaries of sensitivity and stretchability. His 2019 work introducing a sandwich-structured graphene and silver nanowire composite for stretchable strain sensors — capable of detecting strains as low as 1% with ultrahigh sensitivity — garnered 27 citations and represents a landmark contribution to wearable health monitoring technology. Building on this foundation, his 2021 research on ultra-stretchable self-healing hydrogel touch panels (23 citations) advanced the field of soft robotics and artificial intelligence interfaces. His earlier 2018 study on low-cost CVD graphene strain sensors demonstrated a commitment to accessible, scalable solutions for flexible electronics. Liu's broader research curiosity is evident in his bioinspired work replicating fish lateral line pressure-sensing systems, as well as early contributions to mobile robot path planning using particle swarm optimization. Together, his portfolio reflects a researcher who bridges materials science, biomimetics, and intelligent systems with meaningful real-world impact.
Research Focus
Key Achievements
Top Papers
- 1
- 2Ultra‐Stretchable Self‐Healing Composite Hydrogels as Touch Panel23 citations · 2021
- 3Low-Cost Flexible Strain Sensor Based on Thick CVD Graphene13 citations · 2018
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