Papers
13
Total Citations
1,157
H-Index
11
About
Aslan Miriyev is a pioneering researcher at the intersection of soft robotics, smart materials, and physical artificial intelligence, whose work has fundamentally advanced how machines can mimic biological movement. He is best known for his landmark 2017 paper "Soft Material for Soft Actuators," which has accumulated an impressive 827 citations and introduced a muscle-inspired, electrically driven soft actuator using silicone-ethanol composites capable of high strain density — overcoming longstanding limitations in electroactive polymer technologies. His subsequent research systematically refined this platform, investigating functional properties, actuation speed, multi-cyclic performance, and additive manufacturing techniques to enable direct 3D printing of these composite materials for practical robotics applications. Beyond actuation materials, Miriyev has expanded his vision toward physical artificial intelligence, biodegradable eco-robotics, and multifunctional ionogel composites for next-generation synthetic systems. His more recent contributions explore robotic platforms for environmental monitoring and biodiversity conservation, reflecting a growing commitment to sustainable robotics. Across his career, Miriyev has consistently bridged fundamental materials science with real-world robotic applications, making him an influential and forward-thinking voice shaping the future of intelligent, biologically inspired machines.
Research Focus
Key Achievements
Top Papers
- 1Soft material for soft actuators827 citations · 2017
- 2Skills for physical artificial intelligence83 citations · 2020
- 3Functional properties of silicone/ethanol soft-actuator composites54 citations · 2018
- 4Additive Manufacturing of Silicone Composites for Soft Actuation46 citations · 2019
- 5
- 6Rejuvenation of soft material-actuator24 citations · 2018
- 7
- 8Zero-footprint eco-robotics: A new perspective on biodegradable robots16 citations · 2021
- 9A Focus on Soft Actuation16 citations · 2019
- 10