We show that the electron-transfer protein azurin can be used to fabricate biomolecular rectifiers exploiting its native redox properties, chemisorption capability and electrostatic features. The devices consist of a protein layer interconnecting nanoscale electrodes fabricated by electron beam lithography. They exhibit a rectification ratio as large as 500 at 10 V, and operate at room temperature and in air.

Electronic rectification in protein devices

RINALDI, Rosaria;BIASCO, Adriana Lucia Angela;MARUCCIO, Giuseppe;ARIMA, VALENTINA;VISCONTI, Paolo;CINGOLANI, Roberto;
2003-01-01

Abstract

We show that the electron-transfer protein azurin can be used to fabricate biomolecular rectifiers exploiting its native redox properties, chemisorption capability and electrostatic features. The devices consist of a protein layer interconnecting nanoscale electrodes fabricated by electron beam lithography. They exhibit a rectification ratio as large as 500 at 10 V, and operate at room temperature and in air.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11587/300539
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