Papers
3
Total Citations
128
H-Index
3
About
Shu He is a rising innovator in the field of smart soft materials, specializing in the design of multi-responsive actuators and advanced sensors. His research centers on developing hydrogel-based systems that respond to environmental stimuli such as temperature, near-infrared light, and humidity, enabling precise mechanical motion and sensing capabilities. He’s most notable contribution is the creation of an ultrafast thermo-responsive bilayer hydrogel actuator, which leverages hydrogel microspheres to achieve rapid, controllable deformation—a breakthrough that has garnered 92 citations and set a new benchmark for speed in soft robotics. He further advanced the field with a novel multi-responsive soft actuator integrated with a graphene oxide nanoribbon-doped hydrogel sensor, achieving high sensitivity and NIR-triggered performance (24 citations). Most recently, he pioneered a “brick-on-cement” strategy to construct black phosphorus-based films for highly sensitive humidity sensors and triple-stimuli-driven actuators (12 citations). Through these works, Shu He has demonstrated exceptional skill in merging material chemistry with functional device design, establishing himself as a key contributor to next-generation soft robotics and wearable technology.
Research Focus
Key Achievements
Top Papers
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