Papers
17
Total Citations
3,278
H-Index
12
About
Massimo Totaro is a pioneering researcher at the intersection of soft robotics, flexible electronics, and tactile sensing, whose work has fundamentally advanced how robots perceive and interact with their environments. His most celebrated contribution — a highly stretchable electroluminescent skin inspired by cephalopod biology — demonstrated that robotic surfaces could simultaneously emit light and sense touch, garnering over 1,370 citations and capturing the imagination of the broader scientific community. Totaro has been equally influential in shaping the theoretical landscape of soft robotics perception, co-authoring a landmark 2018 review on perceptive soft robots that has accumulated nearly 730 citations. His development of flexible three-axial force sensors capable of detecting forces as subtle as 10 milligrams established new benchmarks for artificial tactile sensitivity. Across his portfolio, Totaro draws consistent inspiration from nature — designing plant-inspired robots, biologically informed sensing architectures, and pneumatic artificial muscles that bridge engineering and biology. His contributions to 3D printing materials for soft robotics have further democratized the field. With over 3,200 citations, Totaro's body of work stands as a cornerstone reference for researchers building the next generation of intelligent, compliant robotic systems.
Research Focus
Key Achievements
Top Papers
- 1Highly stretchable electroluminescent skin for optical signaling and tactile sensing1,374 citations · 2016
- 2Toward Perceptive Soft Robots: Progress and Challenges728 citations · 2018
- 3Flexible Three‐Axial Force Sensor for Soft and Highly Sensitive Artificial Touch475 citations · 2014
- 43D Printing Materials for Soft Robotics350 citations · 2020
- 5A plant-inspired robot with soft differential bending capabilities82 citations · 2016
- 6
- 7Folding and Bending Planar Coils for Highly Precise Soft Angle Sensing55 citations · 2020
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- 10Development of Fully Shielded Soft Inductive Tactile Sensors16 citations · 2019