Papers
13
Total Citations
392
H-Index
10
About
Ping Liu is a pioneering researcher at the intersection of flexible electronics, soft robotics, and advanced materials, whose work has fundamentally advanced the development of electronic skin (e-skin) technologies and intelligent sensing systems. Liu's research spans stretchable conductors, tactile sensing, and bio-inspired actuators, with landmark contributions including the development of a reversible wet-adhesive, self-healing conductive composite elastomer incorporating liquid metals, which has garnered over 105 citations and opened new frontiers in soft electronics. His highly sensitive capacitive 3D-force tactile sensors and flexible strain sensors based on conductive nanocomposites have each attracted 64 citations, demonstrating their broad influence on wearable electronics and robotic manipulation. Liu has systematically addressed critical challenges in robotic perception, pioneering dual-mode proximity sensors, wireless force-sensing systems, and flexible tactile arrays capable of detecting subtle physical stimuli. More recently, his exploration of liquid crystal elastomers as artificial muscles reflects an expanding vision toward bio-inspired actuation. Across a decade of contributions, Liu's cumulative citation impact underscores his sustained influence in shaping next-generation human-machine interfaces, prosthetic devices, and intelligent robotic systems.
Research Focus
Key Achievements
Top Papers
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- 10A low-voltage graphene/Ag-based phase transition-controlled force actuator12 citations · 2019