Sang‐Shin Park
Papers
4
Total Citations
71
H-Index
4
About
Sang‐Shin Park is a leading researcher in advanced functional composites, specializing in the development of smart materials for wearable electronics, energy harvesting, and soft robotics. His work centers on integrating carbon nanomaterials—such as graphene, graphite nanoplatelets, and chemically reduced graphene oxide—into silicone rubber matrices to create flexible, stretchable, and multifunctional systems. Park’s major contributions include pioneering self-powered nano generators and electronic skin technologies that combine intelligent sensing with energy autonomy. His 2025 paper on carbon nano material composites for electronic skin has already garnered 26 citations, while his 2022 study on graphene oxide-silicone rubber composites for piezoelectric energy harvesting earned 21 citations, highlighting the rapid impact of his work. He has also explored the electro-bio-mechanical behavior of graphite nanoplatelet composites for wearable systems (14 citations) and developed novel stretchable magnetic materials by hybridizing graphene nanoplatelets with electrolyte iron particles (10 citations). Park’s research bridges materials science and device engineering, offering scalable solutions for next-generation wearable and robotic applications. His innovative hybrid composites are setting new benchmarks for performance in soft, intelligent systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3
- 4