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    Electronic Transport in the Biopigment Sepia Melanin

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    preprint Electronic Transport in the Biopigment Sepia Melanin.pdf (927.3Kb)
    Date
    2020-07-05
    Author
    Reali, Manuel
    Gouda, Abdelaziz
    Bellemare, Jonathan
    Ménard, David
    Nunzi, Jean-Michel
    Soavi, Francesca
    Santato, Clara
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    Abstract
    Eumelanin is the most common form of the pigment melanin in the human body, with diverse functions including photoprotection, antioxidant behavior, metal chelation, and free radical scavenging. Melanin also plays a role in melanoma skin cancer and Parkinson’s disease. Sepia melanin is a natural eumelanin extracted from the ink sac of cuttlefish. Eumelanin is an ideal candidate to eco-design technologies based on abundant, biosourced, and biodegradable organic electronic materials to alleviate the environmental footprint of the electronics sector. Herein, the focus is on the reversible electrical resistive switching in dry and wet Sepia eumelanin pellets, pointing to the possibility of predominant electronic transport satisfying conditio sine qua non to develop melanin-based electronic devices. These findings shed light on the possibility to describe the transport physics of dry eumelanin using the amorphous semiconductor model. Results are of tremendous importance for the development of sustainable organic electronics.
    URI for this record
    http://hdl.handle.net/1974/28971
    External DOI
    https://doi.org/10.1021/acsabm.0c00373
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    • Department of Physics, Engineering Physics and Astronomy Faculty Publications
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