Papers

18

Total Citations

1,198

H-Index

11

About

Jie Shang is a leading researcher in flexible electronics and bioinspired sensory systems, with a focus on developing advanced tactile and optoelectronic sensors for human-machine interaction, robotics, and healthcare. Their most impactful work includes the creation of an oxide Schottky junction artificial optoelectronic synapse (478 citations), which mimics biological visual perception and memory, and the development of Ti₃C₂Tₓ MXene-based multifunctional tactile sensors (170 citations) that precisely distinguish temperature and pressure stimuli. Shang has also pioneered piezocapacitive flexible e-skin pressure sensors using magnetically grown microstructures (131 citations) and dual-mode strain-temperature sensors with high discriminability (101 citations), enabling smart wearables to decouple complex physiological signals. Their self-powered stretchable strain sensors (66 citations) further demonstrate innovation in motion monitoring and wireless control. With over 1,200 total citations across these works, Shang’s contributions are foundational to next-generation artificial intelligence systems and soft robotics, offering scalable, cost-effective solutions for precise, multi-modal sensing. Their research continues to push boundaries in structural design and 3D printing for high-stability flexible sensors, making them a pivotal figure in the field.

Research Focus

Key Achievements

11
H-Index
18
Papers
1,198
Total Citations
67
Avg Citations/Paper
🏆 Most Cited Paper
An Oxide Schottky Junction Artificial Optoelectronic Synapse
478 citations · 2019
📈 Most Prolific Year: 2025 (6 Papers)
🤝 Key Collaborators: 86
🏛 Institutions: Chinese Academy of Sciences, Ningbo Institute of Industrial Technology

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago