Simone Fabiano
Papers
6
Total Citations
752
H-Index
5
About
Simone Fabiano is a pioneering researcher at the intersection of organic electronics, neuromorphic engineering, and bioelectronics, whose work is reshaping how artificial systems can interface with biological intelligence. His research focuses primarily on organic mixed ionic-electronic conductors and their application in brain-inspired computing, wearable sensing, and soft robotics. Fabiano's most celebrated contributions center on organic electrochemical neurons and synapses — devices that uniquely operate through ion-mediated signaling, mirroring the electrochemical language of biological neurons. His 2022 paper on organic electrochemical neurons and synapses for neuromorphic systems has garnered an impressive 289 citations, establishing him as a leading voice in biocompatible neuromorphic hardware. His 2023 review on organic mixed conductors for bioinspired electronics (159 citations) further solidified his authority in the field. Beyond neural computing, Fabiano has demonstrated remarkable breadth, developing cellulose aerogel-based multiparameter sensors for IoT applications (193 citations) and flexible complementary circuits for low-power diagnostics. His most recent work on dendritic neurons capable of anticoincidence detection pushes the boundaries of what single artificial neurons can compute. With a cumulative citation profile exceeding 750, Fabiano represents an exceptionally productive and visionary force in next-generation bioelectronics.
Research Focus
Key Achievements
Top Papers
- 1Organic electrochemical neurons and synapses with ion mediated spiking289 citations · 2022
- 2
- 3Organic mixed conductors for bioinspired electronics159 citations · 2023
- 4Organic electrochemical neurons for neuromorphic perception92 citations · 2024
- 5Single organic electrochemical neuron capable of anticoincidence detection15 citations · 2025
- 6