Xingsheng Li
Papers
1
Total Citations
12
H-Index
1
About
Xingsheng Li is a materials scientist specializing in the design and development of advanced composite materials for next-generation energy storage devices. His research focuses on stretchable and compressible conductive foams, particularly for high-mass-loading supercapacitor electrodes. Li’s most cited work, published in 2021, introduces a novel Cu nanowire/MWCNT/ethylene-vinyl acetate composite foam that maintains excellent electrical conductivity under mechanical deformation—a critical challenge for wearable electronics. This study, with 12 citations, demonstrates how integrating copper nanowires with multi-walled carbon nanotubes creates a robust, porous architecture capable of supporting high active material loading without sacrificing performance. Li’s contributions lie at the intersection of flexible electronics and energy storage, offering scalable solutions for durable, high-capacity supercapacitors. His work is particularly notable for addressing the trade-off between mechanical compliance and electrochemical efficiency, paving the way for practical applications in portable and implantable devices. By engineering conductive networks that withstand repeated stretching and compression, Li is helping to realize the potential of truly flexible power sources.
Research Focus
Key Achievements
Top Papers
- 1