Daisuke Kumaki
Papers
16
Total Citations
348
H-Index
11
About
Daisuke Kumaki is a pioneering researcher at the forefront of flexible electronics, wearable sensing technologies, and soft robotics, whose work has fundamentally advanced the design and fabrication of printed sensors and actuators. His most significant contributions center on engineering novel conductive composite materials and printing methodologies that simultaneously achieve high sensitivity and wide operational range — properties historically difficult to reconcile. His landmark 2020 paper on brittle-stretchable conductive networks for strain sensing garnered 68 citations, reflecting its outsized influence on the field. Kumaki has pioneered the use of deep eutectic solvents and microporous architectures to create pressure sensors with exceptional dynamic response, directly enabling advances in soft robotics, artificial skin, and healthcare monitoring. His exploration of ferroelectric polymer composites for both pressure sensing and soft actuators has opened new pathways for haptic device development. More recently, his work on robotic e-skin and liquid metal bilayer sensors demonstrates a sustained commitment to bridging materials innovation with real-world robotic perception. With over 300 cumulative citations across his top publications, Kumaki stands as a compelling and productive voice in next-generation human-machine interface research.
Research Focus
Key Achievements
Top Papers
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