Papers
8
Total Citations
1,907
H-Index
8
About
Dianpeng Qi is a leading researcher at the forefront of stretchable electronics and bioinspired intelligent systems. His work masterfully integrates materials science and mechanical engineering to create next-generation soft sensors and actuators. Qi’s most significant contributions lie in developing auxetic mechanical metamaterials that dramatically enhance the sensitivity of stretchable strain sensors (520 citations), overcoming the fundamental limitations of the Poisson effect. He has also pioneered the use of 3D printing to fabricate photoresponsive shape-memory composites (481 citations), enabling complex, stimuli-responsive devices. His research extends to creating soft thermal sensors with mechanical adaptability (226 citations) and artificial somatic reflex arcs (173 citations) for advanced prosthetics and human-machine interfaces. With over 1,900 citations across his top papers, Qi’s work has profoundly impacted wearable technology, soft robotics, and healthcare monitoring. His innovative approach to mechanocombinatorial screening and 3D-structured sensors for out-of-plane force detection further solidifies his reputation as a visionary in the field, pushing the boundaries of what soft, stretchable electronics can achieve.
Research Focus
Key Achievements
Top Papers
- 1
- 23D Printed Photoresponsive Devices Based on Shape Memory Composites481 citations · 2017
- 3Stretchable Organic Semiconductor Devices249 citations · 2016
- 4Soft Thermal Sensor with Mechanical Adaptability226 citations · 2016
- 5An Artificial Somatic Reflex Arc173 citations · 2019
- 6Mechanocombinatorially Screening Sensitivity of Stretchable Strain Sensors127 citations · 2019
- 73D‐Structured Stretchable Strain Sensors for Out‐of‐Plane Force Detection118 citations · 2018
- 8