Jisoo Shin
Papers
2
Total Citations
7
H-Index
2
About
Jisoo Shin is pioneering the frontier of soft, stretchable electronics and ultrasound-driven chemical engineering. Her work bridges two distinct yet transformative fields: intrinsically stretchable transistors and contact-free chemical regulation. In her highly cited 2024 study on ultrasound-driven streaming vortices, Shin demonstrated a novel method to spatially regulate hydrogel polymerization, leveraging acoustic bubble cavitation as a cost-effective, rapid, and non-contact tool for chemical synthesis—a breakthrough with significant implications for programmable materials and lab-on-a-chip technologies. Her 2026 paper on intrinsically stretchable 2D MoS₂ transistors marks a major advance in next-generation electronics, achieving high-performance thin-film transistors on deformable substrates. This work addresses a critical challenge in wearable and implantable devices, where mechanical flexibility must not compromise electronic functionality. With a growing citation footprint, Shin’s research is shaping the future of soft robotics, bio-integrated sensors, and adaptive manufacturing. Her ability to merge fundamental physics with practical device engineering positions her as a rising leader in the fields of stretchable electronics and acoustic chemistry.
Research Focus
Key Achievements
Top Papers
- 1
- 2Intrinsically stretchable 2D MoS2 transistors2 citations · 2026