Shuliang Liu
Papers
1
Total Citations
112
H-Index
1
About
Shuliang Liu is a leading figure in stretchable electronics and advanced materials engineering, with a particular focus on conducting polymers and nanofiber fabrication. His most cited work, "Fabrication of curled conducting polymer microfibrous arrays via a novel electrospinning method for stretchable strain sensors" (2013, 112 citations), introduced a groundbreaking reciprocating-type electrospinning technique that produces aligned, curled microfibrous arrays of PEDOT:PSS-PVP. This innovation directly addressed the critical challenge of maintaining electrical conductivity under mechanical deformation, enabling highly sensitive, durable stretchable strain sensors. Liu’s contributions have significantly advanced the design of flexible, wearable electronics by demonstrating how microstructural architecture—specifically the curled fiber geometry—can enhance sensor performance and mechanical resilience. His work is widely cited in the fields of soft robotics, health monitoring, and human-machine interfaces, reflecting its foundational impact. By merging polymer chemistry with novel manufacturing processes, Liu has established a versatile platform for next-generation stretchable devices, inspiring further research into bioinspired and high-performance electronic skins.
Research Focus
Key Achievements
Top Papers
- 1