A multilayer self-assembled monolayer (MuL-SAM) composed by i) cysteamine, ii) 4-formilphenyl boronic acid and iii) dopamine has been used to functionalize polycrystalline Au. Its electrochemical characterization shows how this surface engineering makes Au reactive toward dopamine. Kelvin probe measurements have shown how MuL-SAM tunes the surface potential of the bare Au. Such measurements are correlated with the electrical performances of organic field-effect transistors (OFETs), whose source/drain electrodes have been functionalized by MuL-SAM. Such devices, operated as chargeinjection organic gauges (CIOGs), have shown sensitivity to the concentration of dopamine in the range of [1, 50] nM.

Charge-Injection Organic Gauges to Detect Dopamine Down to the Nanomolar Scale

Francesca Leonardi;Cristiano Albonetti;Alessandro Kovtun;Andrea Liscio;Fabio Biscarini
2015

Abstract

A multilayer self-assembled monolayer (MuL-SAM) composed by i) cysteamine, ii) 4-formilphenyl boronic acid and iii) dopamine has been used to functionalize polycrystalline Au. Its electrochemical characterization shows how this surface engineering makes Au reactive toward dopamine. Kelvin probe measurements have shown how MuL-SAM tunes the surface potential of the bare Au. Such measurements are correlated with the electrical performances of organic field-effect transistors (OFETs), whose source/drain electrodes have been functionalized by MuL-SAM. Such devices, operated as chargeinjection organic gauges (CIOGs), have shown sensitivity to the concentration of dopamine in the range of [1, 50] nM.
2015
Istituto per la Sintesi Organica e la Fotoreattivita' - ISOF
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
Organic Field-Effect Transistors (OFETs)
Charge-Injection Organic Gauges (CIOGs)
Self-Assmebled Monolayers (SAMs)
Dopamine (DA)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/300622
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