Papers
23
Total Citations
3,695
H-Index
15
About
Dae-Hyeong Kim is a pioneering researcher at the forefront of flexible and stretchable electronics, whose work has fundamentally reshaped how electronic devices interface with the human body and soft robotic systems. His research spans wearable and implantable biomedical devices, human-machine interfaces, optoelectronics, and neuromorphic vision systems — consistently pushing the boundaries of what electronics can do beyond rigid, planar substrates. Kim's most celebrated contributions include the development of waterproof AlInGaP optoelectronics on stretchable substrates (639 citations), demonstrating transformative applications in biomedicine and robotics, and pioneering porous pressure-sensitive rubber using reverse-micelle techniques (627 citations) to dramatically enhance wearable sensing capabilities. His graphene-based transparent, stretchable human-machine interfaces (578 citations) helped lay the groundwork for next-generation wearable computing. His comprehensive reviews on cardiovascular monitoring through flexible electronics (545 citations) and soft robotics (532 citations) have become essential references in both fields. More recently, Kim has extended his vision toward bioinspired robotic perception and neuromorphic imaging systems, reflecting a sophisticated evolution in his research agenda. With multiple papers exceeding 500 citations and a body of work spanning over a decade of high-impact publications, Kim stands as one of the most influential figures in the global flexible electronics community.
Research Focus
Key Achievements
Top Papers
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- 5Flexible and Stretchable Electronics Paving the Way for Soft Robotics532 citations · 2013
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