Papers
8
Total Citations
297
H-Index
6
About
Xiaozhi Wang is a leading researcher in soft electronics and tactile sensing, whose work bridges materials science and robotics to create intelligent, skin-like interfaces. His key research areas include flexible capacitive sensors, iontronic pressure sensors, and electroadhesion technologies for soft robotics. Wang’s major contributions include the development of a Kirigami-inspired 3D-printable MXene organohydrogel (87 citations) that simultaneously achieves high sensitivity, stretchability, and environmental stability—a breakthrough for soft electronics. He also pioneered a flexible capacitive 3D tactile sensor with a cross-shaped capacitor plate pair and composite dielectric (55 citations), enabling precise force and shape detection. His work on high-resolution skin-like sensors (43 citations) has advanced the ability to sense and visualize multiple stimuli, while his electroadhesion research (46 citations) has propelled self-reliant robotic applications with ultralow power consumption. With over 300 total citations, Wang’s innovations have been instrumental in developing wearable electronics, healthcare monitors, and robotic tactile systems. His notable achievements include designing stretchable sensor arrays for robotic hands and encapsulation techniques for reliable motion monitoring, positioning him as a key figure in the next generation of soft, intelligent materials.
Research Focus
Key Achievements
Top Papers
- 1Kirigami‐Inspired 3D‐Printable MXene Organohydrogels for Soft Electronics87 citations · 2023
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- 8Stretchable tiny stress tactile sensor based on capacitor array3 citations · 2016