The sensing of gas molecules is of fundamental importance for environmental monitoring, the control of chemical processes, and non-invasive medical diagnostics based on breath analysis in humans. Herein, the synthesis of hybrid materials (SnO2/graphene oxide-GO and SnO2/porphyrins composites) with ad hoc properties led to chemoresistors able to reduce the acetone sensing temperature, guaranteeing acceptable LOD values. As such, boosted potentialities, especially in terms of tuned selectivity and low water interference, may be obtained.

Towards Low Temperature VOCs Chemoresistors: Graphene Oxide Versus Porphyrin-Based Materials / E. Pargoletti, F. Tessore, G. Di Carlo, G.L. Chiarello, G. Cappelletti. - In: CHEMISTRY PROCEEDINGS. - ISSN 2673-4583. - 5:1(2021 Jun 30), pp. 60.1-60.5. [10.3390/CSAC2021-10418]

Towards Low Temperature VOCs Chemoresistors: Graphene Oxide Versus Porphyrin-Based Materials

E. Pargoletti
Primo
;
F. Tessore
Secondo
;
G. Di Carlo;G.L. Chiarello
Penultimo
;
G. Cappelletti
Ultimo
2021

Abstract

The sensing of gas molecules is of fundamental importance for environmental monitoring, the control of chemical processes, and non-invasive medical diagnostics based on breath analysis in humans. Herein, the synthesis of hybrid materials (SnO2/graphene oxide-GO and SnO2/porphyrins composites) with ad hoc properties led to chemoresistors able to reduce the acetone sensing temperature, guaranteeing acceptable LOD values. As such, boosted potentialities, especially in terms of tuned selectivity and low water interference, may be obtained.
VOC chemoresistors; hybrid materials; low-T sensing;
Settore CHIM/02 - Chimica Fisica
Settore CHIM/03 - Chimica Generale e Inorganica
   PIANO DI SOSTEGNO ALLA RICERCA 2015-2017 - LINEA 2 "DOTAZIONE ANNUALE PER ATTIVITA' ISTITUZIONALE" (2015)
   UNIVERSITA' DEGLI STUDI DI MILANO
30-giu-2021
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/894948
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