Ensieh S. Hosseini
Papers
4
Total Citations
152
H-Index
4
About
Ensieh S. Hosseini is a pioneering researcher at the intersection of flexible electronics, advanced sensing technologies, and soft robotics. Her work spans several interconnected fields, including piezoelectric and capacitive pressure sensing, stretchable electronics, and biomimetic systems designed for real-world applications such as prosthetics, robotics, and autonomous underwater vehicles. Hosseini's most influential contribution — a graphene-based low-voltage field-effect transistor coupled with a biodegradable piezoelectric pressure sensor — has garnered 96 citations since its 2020 publication, demonstrating her capacity to merge sustainability with cutting-edge device engineering. This work directly addresses the growing demand for electronic skin in prosthetics and robotics. Her development of porous PDMS-based capacitive sensors for autonomous underwater vehicles further showcases her versatility, extending flexible sensing solutions to extreme and demanding environments. Earlier work on a soft robotic finger integrated with carbon nanotube-based strain sensors highlights her long-standing commitment to merging soft robotics with functional sensing. Across her portfolio, Hosseini consistently advances the translation of novel materials — graphene, CNTs, biodegradable polymers — into practical, high-performance devices, making her a significant contributor to the future of wearable and autonomous intelligent systems.
Research Focus
Key Achievements
Top Papers
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- 3Soft Robotic Finger with Integrated Stretchable Strain Sensor23 citations · 2018
- 4