Yugo Okada
Papers
2
Total Citations
13
H-Index
2
About
Yugo Okada is a pioneering researcher in the field of flexible and organic electronics, with a specific focus on fabricating functional devices on non-planar, curved surfaces. His major contributions lie in developing novel manufacturing techniques that overcome the inherent challenges of integrating organic thin-film transistors and sensor arrays onto pliable substrates. In his most cited work, "Thermal Molding of Organic Thin-Film Transistor Arrays on Curved Surfaces" (2017, 10 citations), Okada introduced a thermal molding process that allows plastic electronics to be shaped into freely designed, three-dimensional forms, critically analyzing the strain distribution in deformed polymer films. Building on this, his 2019 study, "Organic Sensor Array Distributed in Flexible and Curved Surfaces" (3 citations), demonstrates a practical application by embedding a tactile sensor array onto a soft robotic finger. This work showcases how curved-surface devices can provide artificial touch, detecting subtle deformations from object contact. Okada’s research is notable for pushing the boundaries of conventional planar electronics, offering a foundational pathway for next-generation wearable technology, smart robotics, and biomedical devices that require conformal integration with complex, real-world geometries.
Research Focus
Key Achievements
Top Papers
- 1Thermal Molding of Organic Thin-Film Transistor Arrays on Curved Surfaces10 citations · 2017
- 2Organic Sensor Array Distributed in Flexible and Curved Surfaces3 citations · 2019