Papers
4
Total Citations
26
H-Index
3
About
Run-Wei Li is an emerging researcher whose work bridges advanced materials science and flexible electronics, with a particular focus on ultraviolet photodetection and next-generation sensing technologies. His most impactful contributions center on solar-blind UV photodetectors based on β-Ga2O3 nanowires, a rapidly growing field driven by demand for high-performance detection in extreme environments. Li's development of self-supported nanowire architectures and channel bridge structures has addressed a critical challenge in the field: achieving both high responsivity and mechanical strain stability in flexible devices, with promising applications in fire rescue robotics and smart firefighting equipment. Beyond photodetection, Li has demonstrated versatile expertise in flexible pressure sensing, pioneering ion composite photosensitive resins for 3D-printed capacitive sensors and engineering magnetoelastomer-based tactile sensors with optimized body-centered cubic lattice structures for precise 3D force detection. Though early in his career, his publications in 2025 have already accumulated over 26 combined citations, reflecting strong community interest. His research consistently targets real-world challenges in robotics, human-computer interaction, and intelligent medical systems, positioning him as a promising innovator at the intersection of materials engineering and applied electronics.
Research Focus
Key Achievements
Top Papers
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