Tae‐Min Jang
Papers
4
Total Citations
195
H-Index
4
About
Tae‐Min Jang is a pioneering researcher at the intersection of soft materials, bioelectronics, and sustainable technology. His work centers on developing biodegradable elastomers and bioinspired power systems for next-generation transient electronics. Jang’s most significant contribution is the creation of ultra-stretchable and biodegradable elastomers, detailed in his 2023 paper (139 citations), which enables soft, transient electronic devices that can degrade harmlessly after use—a critical advance for reducing electronic waste in wearable and implantable applications. He further demonstrated the practical impact of this material by synthesizing shape-programmable elastomers for a bioresorbable, wireless nerve stimulator (2024, 24 citations), showcasing potential in therapeutic implants. Jang also draws inspiration from nature, designing electric eel-inspired soft electrocytes for solid-state power systems (2023, 18 citations), offering a novel approach to portable energy storage. His recent work on wireless, multifunctional system-integrated programmable soft robots (2025, 14 citations) pushes the boundaries of reconfigurable robotics. With a growing citation record exceeding 195 total citations, Jang’s research is shaping the future of eco-friendly, soft, and intelligent electronic systems.
Research Focus
Key Achievements
Top Papers
- 1Ultra-stretchable and biodegradable elastomers for soft, transient electronics139 citations · 2023
- 2
- 3Electric Eel‐Inspired Soft Electrocytes for Solid‐State Power Systems18 citations · 2023
- 4Wireless, Multifunctional System-Integrated Programmable Soft Robot14 citations · 2025