Papers
12
Total Citations
1,270
H-Index
10
About
Daniil Karnaushenko is a pioneering researcher at the forefront of flexible and shapeable magnetoelectronics, wearable sensing technologies, and electronic skin systems. His work has fundamentally advanced how magnetic sensors can be integrated into soft, compliant platforms — transforming rigid, high-performance devices into flexible, stretchable, and even imperceptible electronic systems. Karnaushenko's most influential contributions include the development of flexible bismuth Hall sensors adaptable to the human body (265 citations), and landmark explorations of "imperceptible magnetoelectronics" (223 citations) that blur the boundary between electronics and biological skin. His research on shapeable magnetoelectronics (177 citations) demonstrated that inorganic nanomembranes could be transferred to virtually any substrate without sacrificing device performance — a breakthrough enabling entirely new fabrication paradigms. Beyond sensing, his work on magnetosensitive e-skins for augmented reality (145 citations) and wireless-powered flexible microsystems (120 citations) pushes human-machine interaction into exciting new territory. More recently, he has championed self-assembled 3D magnetic encoders and active matrix sensory systems for robotics and prosthetics. With over 1,000 cumulative citations, Karnaushenko's research is shaping the future of soft robotics, wearable health monitoring, and next-generation human augmentation technologies.
Research Focus
Key Achievements
Top Papers
- 1Wearable Magnetic Field Sensors for Flexible Electronics265 citations · 2014
- 2Imperceptible magnetoelectronics223 citations · 2015
- 3Shapeable magnetoelectronics177 citations · 2016
- 4Magnetosensitive e-skins with directional perception for augmented reality145 citations · 2018
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- 9Self-assembly of highly sensitive 3D magnetic field vector angular encoders51 citations · 2019
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