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◆ Biosensors & bioelectronics2026-09-17

Hydrogen-bond mediated pre-enrichment in antioxidant nano-confined 3D flexible cellulose fibers for ultrasensitive 10-19 M level SERS detection.

Cheng Gao, Yun Tang, Zewei Zheng, Yumin Wang, Mengying Che, Wenqin Wu, Zhenfei Fu, Taixian Wang, Yumeng Gong, Shitong Wang, Bowen Hu, Junxi Hu, Pengfei Fang, Wei Zeng, Zhaowei Zhang, Qin Zhou, Yi Xiong

原始摘要(英文原文)· Original abstract
To address key limitations of traditional surface-enhanced Raman scattering (SERS) substrates (Ag oxidation, poor enrichment, impractical in-situ detection) restricting real-world application, we propose a "hydrophilic 3D network for hydrogen-bond enrichment" strategy. Hydroxypropyl methylcellulose (HPMC)/Ag composite nanofibrous membranes (3D-AH-NFMs) were fabricated via green water-ethanol electrospinning, with AgNPs in-situ encapsulated into a biomimetic "nacre-shell" structure. HPMC's hydroxyl groups enable dual "reduction-anchoring" (reducing Ag + to Ag0, anchoring via O-Ag coordination), forming dense 3D SERS "hotspots" and an antioxidant barrier (≤4% signal decay after 6 months). Abandoning reliance on superhydrophobicity, the 3D network enriches polar analytes via hydrogen bonding (≈25 kJ/mol), capillary action, and Ag-S anchoring (≈200 kJ/mol), achieving an analytical enhancement factor (AEF) of ≈1.46 × 108 and an ultralow limit of detection (LOD) of 10-19 M for 4-ATP, outperforming most reported noble-metal substrates by 3-10 orders of magnitude. It also exhibits high selectivity for benzaldehyde (lung cancer biomarker) without acetone/methanol interference. Integrated into a smart-mask platform and coupled with a support vector machine (SVM) algorithm, the system performs non-invasive breath analysis with 99% accuracy and a 3-s response. This work establishes a new paradigm for designing green, stable, and ultrasensitive SERS substrates, paving the way for practical, early-stage disease diagnostics and personalized home-healthcare monitoring.
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Hydrogen-bond mediated pre-enrichment in antioxidant nano-confined 3D flexible cellulose fibers for ultrasensitive 10-19 M level SERS detection. — 科研速览 Science Skim