Papers
6
Total Citations
153
H-Index
5
About
Gilles Lubineau is a pioneer in the development of advanced materials for soft robotics and wearable electronics, with a particular focus on stretchable sensors and programmable matter. His research centers on creating flexible, durable components that can sense temperature, strain, and compression—critical for next-generation soft robots and human-machine interfaces. Among his most impactful contributions is a highly stretchable temperature sensor that exploits the Seebeck effect in nanoparticle-based printed circuits (59 citations), enabling precise thermal sensing in deformable systems. He also developed a bilateral compression/tension sensor using pre-stretched open-crack networks in carbon nanotube papers (49 citations), overcoming a key limitation of stretchable strain sensors that previously could only measure positive strain. More recently, Lubineau has advanced cure-on-demand 3D printing for tactile sensing in soft robotics and extended reality (20 citations), and created stretchable fibers with tunable stiffness for programmable shape change (14 citations). His work on electrical welding to transform sensors into conductors and all-polymer polymorph skins with controllable surface textures further demonstrates his drive to integrate multiple functionalities into soft, adaptive materials. With a growing citation record and a clear trajectory toward practical, multifunctional soft systems, Lubineau is shaping the future of intelligent, body-compliant electronics.
Research Focus
Key Achievements
Top Papers
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- 6All-polymer based polymorph skin with controllable surface texture4 citations · 2019