Papers
15
Total Citations
3,107
H-Index
11
About
Donghee Son is a pioneering researcher at the forefront of flexible and wearable electronics, with particular expertise in electronic skin, human-machine interfaces, and bioinspired neuromorphic systems. His work has fundamentally advanced the design of stretchable, self-healing materials for next-generation wearable devices, most notably demonstrated through his landmark 2018 paper on water-insensitive self-healing elastomers for electronic skin, which has garnered over 1,100 citations and addressed a critical challenge in long-term device durability. Son's contributions span the development of transparent graphene-based human-machine interfaces (578 citations), stretchable optoelectronic synapses that emulate sensory and motor functions (516 citations), and artificial neural tactile sensing systems (423 citations), collectively establishing him as a leading voice in bio-integrated electronics. His more recent work on injectable tissue prosthetics and injectable skin adhesives reflects a bold expansion into closed-loop rehabilitation technologies with direct clinical implications. Son has also made notable strides in ultrastretchable nanocomposite conductors and modular reconfigurable electronics. With thousands of citations across a relatively compact body of work, his research consistently bridges materials science, neuroscience, and biomedical engineering to shape the future of human-centered computing.
Research Focus
Key Achievements
Top Papers
- 1Tough and Water‐Insensitive Self‐Healing Elastomer for Robust Electronic Skin1,105 citations · 2018
- 2
- 3Stretchable organic optoelectronic sensorimotor synapse516 citations · 2018
- 4An artificial neural tactile sensing system423 citations · 2021
- 5Injectable tissue prosthesis for instantaneous closed-loop rehabilitation170 citations · 2023
- 6
- 7Modular and Reconfigurable Stretchable Electronic Systems59 citations · 2018
- 8Injection‐on‐Skin Granular Adhesive for Interactive Human–Machine Interface34 citations · 2023
- 9
- 10