Daishi Inoue
Papers
3
Total Citations
822
H-Index
3
About
Daishi Inoue is a leading figure in the development of printable, stretchable, and ultra-thin electronics, with a focus on creating robust, high-performance materials for next-generation flexible devices. His most impactful contribution is the invention of printable elastic conductors through the in-situ formation of silver nanoparticles from silver flakes, a breakthrough work that has garnered over 730 citations and revolutionized the field of soft electronics. Inoue further advanced transparent electrode technology by engineering reverse-offset printed ultrathin silver meshes, achieving exceptional mechanical durability and conformability for high-performance organic photovoltaics. His recent work on direct conductive bonding of silver electrodes on ultrathin polymer films addresses a critical challenge in integrating flexible electronics for soft robotics and on-skin applications, maintaining flexibility while ensuring reliable electrical connections. With a research portfolio spanning materials science, printed electronics, and device integration, Inoue’s innovations have enabled practical pathways toward durable, wearable, and energy-efficient electronic systems, making him a key contributor to the future of flexible and stretchable electronics.
Research Focus
Key Achievements
Top Papers
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