Jingyi Yang
Papers
2
Total Citations
8
H-Index
2
About
Jingyi Yang is pioneering the next generation of intelligent, bio-inspired soft sensors for environmental and underwater applications. Her research lies at the intersection of neuromorphic engineering, soft robotics, and sustainable materials, with a focus on creating sensors that mimic biological systems. In her highly cited 2025 work on a "Self‐Spiking Linear Neuromorphic Soft Pressure Sensor," Yang developed a device that emulates the lateral line system of aquatic vertebrates, enabling the detection of subtle water vibrations and pressure gradients for underwater sensing. This innovation, garnering 6 citations shortly after publication, promises transformative advances in marine robotics and environmental monitoring. Further demonstrating her commitment to sustainability, Yang introduced a "Recyclable self-secreting autonomous healing dielectrics for millisecond water quality sensing" (2025). This work tackles the critical challenge of real-time water quality management with an ultrafast, self-healing, and fully recyclable sensor, addressing the limitations of conventional non-recyclable devices. By combining autonomous healing with rapid response, Yang’s research offers a paradigm shift toward eco-friendly, durable sensing technologies. Her contributions are establishing her as a leading voice in sustainable neuromorphic sensing, with clear potential for real-world impact in environmental stewardship and advanced robotics.
Research Focus
Key Achievements
Top Papers
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