Papers
3
Total Citations
51
H-Index
3
About
Haryeong Cho is at the forefront of next-generation tactile sensing technology, specializing in the design of soft, self-powered sensors for wearable and biomedical applications. Their work centers on piezoionic and triboelectric nanogenerators, which convert mechanical stimuli into electrical signals through ion transport in flexible materials. Cho’s major contributions include the development of a bilayer piezoionic sensor with self-healing capabilities, enabling enhanced detection of dynamic, static, and directional forces—a breakthrough for prosthetics and human-machine interfaces. Their 2024 paper on this topic has already garnered 26 citations. Cho also pioneered biodegradable, stretchable triboelectric nanogenerators using interfacial polarization in bilayer structures (16 citations), addressing the critical need for eco-friendly electronics. Most recently, their 2025 work on multilayer iontronic sensors with controlled charge gradients achieved high-performance, self-powered tactile sensing (9 citations). By integrating stretchability, biodegradability, and self-healing properties, Cho is pushing the boundaries of sustainable, intelligent soft electronics. Their research holds transformative potential for next-generation robotics, healthcare monitoring, and interactive wearable systems.
Research Focus
Key Achievements
Top Papers
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