Semiconducting single walled carbon nanotubes (SWCNTs) are promising materials for biosensing applications with electrolyte-gated transistors (EGT). However, to be employed in EGT devices, SWCNTs often require lengthy solution-processing fabrication techniques. Here, we introduce a simple solution-based method that allows fabricating EGT devices from stable dispersions of SWCNTs/bovine serum albumin (BSA) hybrids in water. The dispersion is then deposited on a substrate allowing the formation of a SWCNTs random network as the semiconducting channel. We demonstrate that this methodology allows the fabrication of EGT devices with electric performances that allow their use in biosensing applications. We demonstrate their application for the detection of cortisol in solution, upon gate electrode functionalization with anti-cortisol antibodies. This is a robust and cost-effective methodology that sets the ground for a SWCNT/BSA-based biosensing platform that allows overcoming many limitations of standard SWCNTs biosensor fabrications.

Robust Biosensor Based on Carbon Nanotubes/Protein Hybrid Electrolyte Gated Transistors / Paradisi, Alessandro; Berto, Marcello; Di Giosia, Matteo; Mazzali, Sara; Borsari, Marco; Marforio, Tainah Dorina; Zerbetto, Francesco; Calvaresi, Matteo; Orieshyna, Anna; Amdursky, Nadav; Bortolotti, Carlo Augusto; Biscarini, Fabio. - In: CHEMISTRY-A EUROPEAN JOURNAL. - ISSN 0947-6539. - 29:55(2023), pp. 1-9. [10.1002/chem.202301704]

Robust Biosensor Based on Carbon Nanotubes/Protein Hybrid Electrolyte Gated Transistors

Paradisi, Alessandro;Berto, Marcello;Mazzali, Sara;Borsari, Marco;Bortolotti, Carlo Augusto;Biscarini, Fabio
2023

Abstract

Semiconducting single walled carbon nanotubes (SWCNTs) are promising materials for biosensing applications with electrolyte-gated transistors (EGT). However, to be employed in EGT devices, SWCNTs often require lengthy solution-processing fabrication techniques. Here, we introduce a simple solution-based method that allows fabricating EGT devices from stable dispersions of SWCNTs/bovine serum albumin (BSA) hybrids in water. The dispersion is then deposited on a substrate allowing the formation of a SWCNTs random network as the semiconducting channel. We demonstrate that this methodology allows the fabrication of EGT devices with electric performances that allow their use in biosensing applications. We demonstrate their application for the detection of cortisol in solution, upon gate electrode functionalization with anti-cortisol antibodies. This is a robust and cost-effective methodology that sets the ground for a SWCNT/BSA-based biosensing platform that allows overcoming many limitations of standard SWCNTs biosensor fabrications.
2023
29
55
1
9
Robust Biosensor Based on Carbon Nanotubes/Protein Hybrid Electrolyte Gated Transistors / Paradisi, Alessandro; Berto, Marcello; Di Giosia, Matteo; Mazzali, Sara; Borsari, Marco; Marforio, Tainah Dorina; Zerbetto, Francesco; Calvaresi, Matteo; Orieshyna, Anna; Amdursky, Nadav; Bortolotti, Carlo Augusto; Biscarini, Fabio. - In: CHEMISTRY-A EUROPEAN JOURNAL. - ISSN 0947-6539. - 29:55(2023), pp. 1-9. [10.1002/chem.202301704]
Paradisi, Alessandro; Berto, Marcello; Di Giosia, Matteo; Mazzali, Sara; Borsari, Marco; Marforio, Tainah Dorina; Zerbetto, Francesco; Calvaresi, Matt...espandi
File in questo prodotto:
File Dimensione Formato  
Accepted Version - docx version.docx

Accesso riservato

Tipologia: AAM - Versione dell'autore revisionata e accettata per la pubblicazione
Dimensione 1.27 MB
Formato Microsoft Word XML
1.27 MB Microsoft Word XML   Visualizza/Apri   Richiedi una copia
Pubblicazioni consigliate

Licenza Creative Commons
I metadati presenti in IRIS UNIMORE sono rilasciati con licenza Creative Commons CC0 1.0 Universal, mentre i file delle pubblicazioni sono rilasciati con licenza Attribuzione 4.0 Internazionale (CC BY 4.0), salvo diversa indicazione.
In caso di violazione di copyright, contattare Supporto Iris

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1368088
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 3
  • ???jsp.display-item.citation.isi??? 5
social impact