Papers
14
Total Citations
840
H-Index
9
About
Mohsen Asadnia is a pioneering researcher at the intersection of biomimetic sensing, flexible electronics, and wearable technologies. His work spans several interconnected domains, including bio-inspired flow sensors, stretchable strain sensors, piezoelectric energy harvesters, and human motion detection systems. Drawing inspiration from biological sensory structures such as the mechanosensory hair cells of fish, Asadnia has developed groundbreaking artificial flow sensors that closely replicate nature's elegant engineering — most notably through biomimetic ciliary bundle designs and hydrogel-based neuromast sensors that achieve remarkable sensitivity for underwater robotics and fluid monitoring applications. His contributions to wearable sensing are equally significant. Asadnia's development of PVA/AgNW hydrogel strain sensors and electrospun piezoelectric polymeric nanofiber sensors has advanced the field of skin-like electronics for human motion tracking, prosthetics, and human-machine interfaces. His 2020 work on vertical graphene nanosheet flow sensors further demonstrates his commitment to pushing material boundaries for ultra-sensitive detection. With flagship papers accumulating over 155 and 165 citations respectively, and a body of work totaling hundreds of citations, Asadnia's research has made a measurable impact across robotics, biomedical engineering, and smart sensing communities. His 2022 comprehensive review on wearable piezoelectric sensors has also become a valuable resource for researchers navigating this rapidly growing field.
Research Focus
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