Lukas Hiendlmeier
Papers
1
Total Citations
14
H-Index
1
About
Lukas Hiendlmeier is a rising innovator at the intersection of flexible electronics, biocompatible materials, and advanced manufacturing. His research centers on developing stretchable, thin-film electronic devices for applications in implants, soft robotics, and wearables—fields where conventional rigid electronics fail. Hiendlmeier’s most cited work, "Origami‐Enabled Stretchable Electrodes Based on Parylene Deposition and 3D Printing" (2023, 14 citations), introduces a novel approach to achieving stretchability in flexible substrates. By combining parylene deposition with 3D printing and origami-inspired structural design, he demonstrates how thin, biocompatible films can be transformed into stretchable electrodes without sacrificing flexibility or biocompatibility. This contribution addresses a critical challenge in bioelectronics: creating devices that can conform to moving tissues while maintaining electrical integrity. Though early in his career, Hiendlmeier’s work has already attracted attention for its elegant integration of materials science and mechanical design. His approach holds promise for next-generation implantable sensors and soft robotic systems, positioning him as a researcher to watch in the rapidly evolving field of stretchable bioelectronics.
Research Focus
Key Achievements
Top Papers
- 1