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Engineering polydopamine films with tailored behavior for next-genartion eumelanin-related hybrid devices

Academic Article
Publication Date:
2013
abstract:
Eumelanin-type biopolymers have attracted growing interest in the quest for soft bioinspired functional materials for application in organoelectronics. Recently, a metal-insulator-semiconductor device with a good quality interface was produced by spin coating of a commercial synthetic eumelanin-like material on a dry plasma-modified silicon surface. As a proof-of-concept step toward the design and implementation of next-generation eumelanin-inspired devices, we report herein an expedient chemical strategy to bestow n-type performance to polydopamine, a highly popular eumelanin-related biopolymer with intrinsic semiconductor behaviour, and to tune its electrical properties. The strategy relies on aerial co-oxidation of dopamine with suitable aromatic amines, e.g. 3-aminotyrosine or p- phenylenediamine, leading to good quality black polymeric films. Capacitance-voltage experiments on poly(dopamine/3-aminotyrosine) and poly(dopamine/p-phenylenediamine)-based metal insulator semiconductor devices on p-Si indicated a significant increase in flat band voltage with respect to polydopamine and previous synthetic eumelanin-based diodes. Variations of the flat band voltage under vacuum were observed for each device. These results point to polydopamine as a versatile eumelanin-type water-dependent semiconductor platform amenable to fine tuning of its electronic properties through incorporation of p-conjugating aromatic amines to tailor functionality.
Iris type:
01.01 Articolo in rivista
Keywords:
Eumelanin-type biopolymers
List of contributors:
Ambrico, Marianna; Ambrico, PAOLO FRANCESCO; Cicco, STEFANIA ROBERTA; Cardone, Antonio
Authors of the University:
AMBRICO MARIANNA
AMBRICO PAOLO FRANCESCO
CARDONE ANTONIO
CICCO STEFANIA ROBERTA
Handle:
https://iris.cnr.it/handle/20.500.14243/265836
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