Papers
7
Total Citations
172
H-Index
5
About
Jun-Ho Jeong is a leading researcher in the field of soft robotics and smart materials, with a primary focus on electrically driven polymer-based flexible actuators, shape-morphing films, and sensor-actuator hybrid systems. His most significant contribution is the development of heterogeneous conductance-based soft electrothermal actuators (ETAs), which enable locally controllable shape-morphing from a single substrate—a breakthrough that overcomes the limitations of traditional uniform actuation. This work, published in *Advanced Materials Technologies* (2019, 41 citations), has been foundational for designing soft grippers and wearable devices. Jeong’s highly cited review on electrically driven polymer-based flexible actuators (2022, 87 citations) provides a comprehensive roadmap for the field, while his recent work on field-programmable robotic folding sheets (2025) and material-level integration of magnetic actuation with triboelectric sensing (2025) pushes the boundaries of embodied intelligence and adaptive robotics. His research consistently emphasizes biomimetic design and part-by-part maneuverability, achieving complex movements without multi-element assemblies. With over 170 total citations, Jeong’s work is shaping the next generation of soft, autonomous systems for applications in healthcare, human-robot interaction, and adaptive environments.
Research Focus
Key Achievements
Top Papers
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- 4Field-programmable robotic folding sheet6 citations · 2025
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