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食品质量监测器:通过反转纳米压印制备的基于纸张的等离子体传感器,用于快速检测生物胺气味剂。

Food Quality Monitor: Paper-Based Plasmonic Sensors Prepared Through Reversal Nanoimprinting for Rapid Detection of Biogenic Amine Odorants.

机构信息

Institute of Biomedical Engineering, National Tsing Hua University , Hsinchu, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2017 May 24;9(20):17306-17316. doi: 10.1021/acsami.7b00115. Epub 2017 May 11.

Abstract

This paper describes the fabrication of paper-based plasmonic refractometric sensors through the embedding of metal nanoparticles (NPs) onto flexible papers using reversal nanoimprint lithography. The NP-embedded papers can serve as gas sensors for the detection of volatile biogenic amines (BAs) released from spoiled food. Commercial inkjet papers were employed as sensor substrates-their high reflectance (>80%) and smooth surfaces (roughness: ca. 4.9 nm) providing significant optical signals for reflection-mode plasmonic refractometric sensing and high particle transfer efficiency, respectively; in addition, because inkjet papers have lightweight and are burnable and flexible, they are especially suitable for developing portable, disposable, cost-effective, eco-friendly sensing platforms. Solid silver NPs (SNPs), solid gold NPs (GNPs), and hollow Au-Ag alloyed NPs (HGNs) were immobilized on a solid mold and then transferred directly onto the softened paper surfaces. The particle number density and exposure height of the embedded NPs were dependent on two imprinting parameters: applied pressure and temperature. The optimal samples exhibited high particle transfer efficiency (ca. 85%), a sufficient exposure surface area (ca. 50% of particle surface area) presented to the target molecules, and a strong resonance reflectance dip for detection. Moreover, the HGN-embedded paper displayed a significant wavelength dip shift upon the spontaneous adsorption of BA vapors (e.g., Δλ = 33 nm for putrescine; Δλ = 24 nm for spermidine), indicating high refractometric sensitivity; in contrast, no visible spectroscopic responses were observed with respect to other possibly coexisting gases (e.g., air, N, CO, water vapor) during the food storage process, indicating high selectivity. Finally, the plasmonic sensing papers were used to monitor the freshness of a food product (salmon).

摘要

本文通过将金属纳米粒子(NPs)嵌入到柔性纸张中,利用反转纳米压印光刻技术制备了基于纸张的等离子体折射率传感器。NP 嵌入的纸张可用作气体传感器,用于检测变质食物释放的挥发性生物胺(BAs)。商用喷墨纸被用作传感器基底,其高反射率(>80%)和光滑表面(粗糙度:约 4.9nm)分别为反射模式等离子体折射率传感提供了显著的光学信号和高颗粒转移效率;此外,由于喷墨纸重量轻、易燃且柔软,因此特别适合开发便携式、一次性、经济高效、环保的传感平台。固态银纳米粒子(SNPs)、固态金纳米粒子(GNPs)和空心 Au-Ag 合金纳米粒子(HGNs)被固定在固体模具上,然后直接转移到软化的纸张表面。嵌入 NPs 的颗粒数密度和暴露高度取决于两个压印参数:施加的压力和温度。最佳样品表现出高颗粒转移效率(约 85%)、足够大的暴露表面积(约为颗粒表面积的 50%)暴露于目标分子,并具有强共振反射率下降用于检测。此外,HGN 嵌入的纸张在自发吸附 BA 蒸气时显示出明显的波长下降(例如,腐胺的 Δλ=33nm;精胺的 Δλ=24nm),表明具有高折射率灵敏度;相比之下,在食物储存过程中,对于其他可能共存的气体(例如空气、N、CO、水蒸气),没有观察到可见的光谱响应,表明具有高选择性。最后,等离子体传感纸被用于监测一种食品(三文鱼)的新鲜度。

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