SERS-Enabled Direct Detection of Furfural in a Complex Oil Mixture

Furfural is a pivotal indicator of the aging condition of transformer oil-paper insulation. Traditional analytical techniques such as liquid chromatography require sophisticated pretreatment and phase-separation procedures and are therefore not well suited to rapid oil-sample analysis. This study reports the direct analysis of furfural in complex oil mixtures using surface-enhanced Raman spectroscopy (SERS). The weak vibrational response of furfural in oil was enhanced using a Au-coated silicon nanowire substrate fabricated by metal-assisted chemical etching (MACE). The textured metal-coated surface enabled trace furfural at the μL/L level to be measured directly in the oil mixture without adsorption enrichment or chemical extraction, with the entire test process completed within 1 min. Peak deconvolution was used to extract the fitted area of the 1365 cm−1 band, and the relationship between this Raman response and furfural concentration yielded R2 = 0.9910. Temperature- and pressure-dependent measurements were also performed to examine their effects on the positions of the main Raman peaks. This work demonstrates a rapid approach for analyzing trace furfural in complex liquid mixtures and provides a basis for further spectroscopic studies of transformer oil-paper insulation aging.

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Publication Details

Journal
Sensors
Published
2026-09-08
DOI
https://doi.org/10.3390/s26185705
Primary Topic
Power Transformer Diagnostics and Insulation
Type
article
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SERS-Enabled Direct Detection of Furfural in a Complex Oil Mixture

Shanyuan Niu, Jin Cao, Xiaoqin Zhang, Hongbin Zhu et al.
Sensors
Power Transformer Diagnostics and Insulation
article

SERS-Enabled Direct Detection of Furfural in a Complex Oil Mixture

Shanyuan Niu, Jin Cao, Xiaoqin Zhang, Hongbin Zhu, Han Shi, Hao Liu
article en

Abstract

Furfural is a pivotal indicator of the aging condition of transformer oil-paper insulation. Traditional analytical techniques such as liquid chromatography require sophisticated pretreatment and phase-separation procedures and are therefore not well suited to rapid oil-sample analysis. This study reports the direct analysis of furfural in complex oil mixtures using surface-enhanced Raman spectroscopy (SERS). The weak vibrational response of furfural in oil was enhanced using a Au-coated silicon nanowire substrate fabricated by metal-assisted chemical etching (MACE). The textured metal-coated surface enabled trace furfural at the μL/L level to be measured directly in the oil mixture without adsorption enrichment or chemical extraction, with the entire test process completed within 1 min. Peak deconvolution was used to extract the fitted area of the 1365 cm−1 band, and the relationship between this Raman response and furfural concentration yielded R2 = 0.9910. Temperature- and pressure-dependent measurements were also performed to examine their effects on the positions of the main Raman peaks. This work demonstrates a rapid approach for analyzing trace furfural in complex liquid mixtures and provides a basis for further spectroscopic studies of transformer oil-paper insulation aging.

SensorsVol. 26(18)
Nanjing Agricultural University (CN), Nanjing Tech University (CN), Nanjing University (CN)
Openalex Percentile: Top 20%
Power Transformer Diagnostics and Insulation
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