Papers
2
Total Citations
11
H-Index
2
About
Sayantan Pal is an emerging researcher working at the intersection of flexible electronics, wearable sensing technologies, and soft robotics. His work focuses on the design and development of stretchable, conductive fabric-based sensors that offer practical alternatives to complex microfluidic and nanoparticle-based systems. Pal's most cited contribution, "Design, development and analysis of a conductive fabric based flexible and stretchable strain sensor" (2020, 7 citations), demonstrates his ability to translate advanced materials science into accessible, manufacturable sensing solutions using elastomeric and variable-resistance fabrics. Building on this foundation, his follow-up work on sensorized pneumatic artificial muscles (2020, 4 citations) applies these flexible sensing principles directly to bio-robotics, integrating stretchable conductive textiles into soft actuator systems. This research direction holds significant promise for next-generation prosthetics, rehabilitation devices, and human-machine interfaces. Though early in his citation trajectory, Pal's practical engineering approach — prioritizing simplicity of fabrication without sacrificing performance — positions him as a noteworthy contributor to the rapidly expanding field of soft and wearable robotics. Students exploring compliant sensing systems and bio-inspired actuators would find his methodology particularly instructive.
Research Focus
Key Achievements
Top Papers
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