Ting‐Hsiang Chang
Papers
5
Total Citations
315
H-Index
5
About
Ting-Hsiang Chang is a pioneering researcher at the intersection of soft robotics, stretchable electronics, and advanced functional materials. His work centers on developing novel material architectures that enable robots to sense, communicate, and withstand extreme environments. Chang’s most significant contribution is the creation of stretchable graphene pressure sensors featuring Shar-Pei-like hierarchical wrinkles, which achieve remarkable sensitivity and have been integrated into surgical robots for transoral robotic surgery—a breakthrough with 127 citations. He also introduced multifunctional metallic backbones for origami robotics, combining actuation, strain sensing, and wireless communication in a single platform (74 citations). In the realm of safety and resilience, Chang developed crumpling hybrid nanocoatings as stretchable flame-retardant skins (48 citations) and later advanced hydrogel–montmorillonite translucent matrices for soft robotics operating in high-temperature conditions (25 citations). His graphene oxide-enabled synthesis of metal oxide origamis further expands the design space for soft robotic backbones (41 citations). With over 315 total citations across his top works, Chang is recognized for seamlessly merging materials science with robotics, creating systems that are not only functional but also durable and adaptive for real-world applications.
Research Focus
Key Achievements
Top Papers
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- 4Graphene Oxide-Enabled Synthesis of Metal Oxide Origamis for Soft Robotics41 citations · 2019
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