Issue 31, 2013

Elaboration, activity and stability of silica-based nitroaromatic sensors

Abstract

Functionalized silica-based thin films, modified with hydrophobic groups, were synthesized and used as sensors for nitroaromatic compound (NAC) specific detection. Their performance and behavior, in terms of stability, ageing and regeneration, have been fully characterized by combining chemical characterization techniques and electron microscopy. NAC was efficiently and specifically detected using these silica-based sensors, but showed a great degradation in the presence of humidity. Moreover, the sensor sensitivity seriously decreases with storage time. Methyl- and phenyl-functionalization helped to overcome this humidity sensitivity. Surface characterization enabled us to establish a direct correlation between the appearance, and increasing amount, of adsorbed carbonyl-containing species, and sensor efficiency. This contamination, appearing after only one month, was particularly important when sensors were stored in plastic containers. Rinsing with cyclohexane enables us to recover part of the sensor performance but does not yield a complete regeneration of the sensors. This work led us to the definition of optimized elaboration and storage conditions for nitroaromatic sensors.

Graphical abstract: Elaboration, activity and stability of silica-based nitroaromatic sensors

Supplementary files

Article information

Article type
Paper
Submitted
27 Sep 2012
Accepted
09 May 2013
First published
28 Jun 2013

Phys. Chem. Chem. Phys., 2013,15, 12911-12919

Elaboration, activity and stability of silica-based nitroaromatic sensors

D. Mercier, F. Pereira, C. Méthivier, P. Montméat, L. Hairault and C. Pradier, Phys. Chem. Chem. Phys., 2013, 15, 12911 DOI: 10.1039/C3CP43406K

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