An Optical Device Based on a Chemical Chip and Surface Plasmon Platform for 2-Furaldehyde Detection in Insulating Oil

Author:

De Maria Letizia1ORCID,Arcadio Francesco2ORCID,Gabetta Giuseppe3,Merli Daniele4,Alberti Giancarla4ORCID,Zeni Luigi2ORCID,Cennamo Nunzio2ORCID,Pesavento Maria4

Affiliation:

1. RSE S.p.A., Via Rubattino 54, 20134 Milan, Italy

2. Department of Engineering, University of Campania L. Vanvitelli, Via Roma 29, 81031 Aversa, Italy

3. CESI S.p.A., Via Rubattino 54, 20134 Milan, Italy

4. Department of Chemistry, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy

Abstract

2-Furaldehyde (2-FAL) is one of the main by-products of the degradation of hemicellulose, which is the solid material of the oil–paper insulating system of oil-filled transformers. For this reason, it has been suggested as a marker of the degradation of the insulating system; sensing devices for 2-FAL analysis in a wide concentration range are of high interest in these systems. An optical sensor system is proposed; this consists of a chemical chip, able to capture 2-FAL from the insulating oil, coupled with a surface plasmon resonance (SPR) probe, both realized on multimode plastic optical fibers (POFs). The SPR platform exploits gold nanofilm or, alternatively, a double layer of gold and silicon oxide to modulate the sensor sensitivity. The capturing chip is always based on the same molecularly imprinted polymer (MIP) as a receptor specific for 2-FAL. The system with the SPR probe based on a gold nanolayer had a higher sensitivity and a lower detection limit of fractions of μg L−1. Instead, the SPR probe, based on a double layer (gold and silicon oxide), has a lower sensitivity with a worse detection limit, and it is suitable for the detection of 2-FAL at concentrations of 0.01–1 mg L−1.

Funder

Research Fund for the Italian Electrical System

Publisher

MDPI AG

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