Papers
9
Total Citations
531
H-Index
7
About
Shu-Hong Yu is a materials scientist whose research sits at the dynamic intersection of smart materials, biomimetic engineering, and soft robotics. Drawing inspiration from biological systems, Yu has made significant contributions to the development of stimuli-responsive materials, including self-healing hydrogels, liquid crystal elastomers, and conductive composites capable of shape transformation under external stimuli such as light, heat, and magnetic fields. Yu's most celebrated work, "Anisotropic and self-healing hydrogels with multi-responsive actuating capability" (2019, 350 citations), established a landmark framework for fabricating artificial muscle-like actuators with practical self-healing functions — addressing a critical bottleneck in wearable and soft robotic applications. Subsequent research expanded this vision into ultrastretchable strain sensors, environmentally adaptive conductive architectures, and magnetically driven microrobots, reflecting a consistent drive toward functional, real-world deployment of advanced materials. More recently, Yu has pioneered photoactivated oscillators, self-positioning microdevices for spatial displays, and nanowire-guided shape-morphing systems, broadening the scope of biomimetic materials into extended reality and biomedical applications. Yu's editorial contribution to the 2024 Special Issue on "Advances in Biomimetic Materials" further underscores a leadership role within the field. With a growing citation record and increasingly multidisciplinary output, Yu represents a compelling voice in next-generation intelligent materials research.
Research Focus
Key Achievements
Top Papers
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- 4Advances in Biomimetic Materials21 citations · 2024
- 5Self-positioning microdevices enable adaptable spatial displaying13 citations · 2025
- 6Robust and Fast‐Transforming Soft Microrobots Driven by Low Magnetic Field12 citations · 2025
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