Qizhi Dong
Papers
1
Total Citations
43
H-Index
1
About
Qizhi Dong has made pioneering contributions to the field of flexible electronics, with a particular focus on high-performance pressure sensors for wearable technology and soft robotics. His most cited work, "Highly Sensitive 1T‐MoS₂ Pressure Sensor with Wide Linearity Based on Hierarchical Microstructures of Leaf Vein as Spacer" (2019, 43 citations), exemplifies his innovative approach to bio-inspired sensor design. In this landmark study, Dong harnessed the natural hierarchical microstructure of leaf veins as a spacer layer, integrating it with metallic-phase molybdenum disulfide to achieve exceptional sensitivity and an impressively wide linear response range—a critical advance that eliminates the need for complex signal processing in miniaturized devices. This work directly addresses fundamental challenges in flexible pressure sensing, balancing high sensitivity with broad linearity to enable reliable, real-world applications. Dong’s research sits at the intersection of materials science, biomimicry, and device engineering, demonstrating how nature-inspired architectures can unlock new performance benchmarks. His contributions are shaping the next generation of intelligent, skin-like sensors for health monitoring, human-machine interfaces, and beyond.
Research Focus
Key Achievements
Top Papers
- 1