Yuting Jiang
Papers
3
Total Citations
106
H-Index
3
About
Yuting Jiang is a pioneering researcher in the field of stretchable electronics and soft robotics, with a focus on developing advanced materials for flexible sensing and energy harvesting. Her major contributions include the creation of novel composite materials that combine conductive nanomaterials like carbon nanotubes (CNTs) and graphene with elastic polymers, enabling unprecedented sensitivity and stretchability in strain sensors. Notably, her 2018 work on "Stretchable CNTs‐Ecoflex Composite as Variable‐Transmittance Skin for Ultrasensitive Strain Sensing" (42 citations) introduced a smart skin that changes transparency under strain, offering transformative potential for wearable devices and human-machine interfaces. In 2019, she advanced this field with a laser-etched graphene–polymer composite array (34 citations) that simultaneously detects strain and viscosity, demonstrating multifunctional sensing capabilities. Beyond sensing, Jiang has also explored energy autonomy in soft robotics, as shown in her work on floating robotic insects (30 citations) that harvest electric energy from water surfaces to power self-sustaining functions. Her research is characterized by elegant, scalable fabrication methods and a clear vision for integrating sensing, actuation, and energy harvesting into soft, adaptive systems. With over 100 cumulative citations, Jiang’s work is shaping the next generation of intelligent, self-powered flexible electronics.
Research Focus
Key Achievements
Top Papers
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