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具有荧光和表面增强拉曼散射活性的刺激响应性微凝胶用于水和温度传感。

Stimuli-responsive microgels with fluorescent and SERS activities for water and temperature sensing.

作者信息

Liu Lulu, Li Dan, Deng Wei

机构信息

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, 100 Haiquan Road, Shanghai, 201418, PR China.

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, 100 Haiquan Road, Shanghai, 201418, PR China.

出版信息

Biosens Bioelectron. 2021 May 15;180:113138. doi: 10.1016/j.bios.2021.113138. Epub 2021 Mar 3.

DOI:10.1016/j.bios.2021.113138
PMID:33706159
Abstract

Design and application of stimulus-responsive microgels is still in its infancy but is an exhilarating topic in controllable sensing device. Here, we have fabricated a dual-responsive platform capable of both sensitive on-spot fluorescence analysis and reliable surface-enhanced Raman scattering (SERS) quantification of water and temperature by in-situ encapsulating 4,4'-dimercaptoazobenzene (DMAB), meso-formyl-1,3,5,7-tetramethyl pyrromethene fluoroborate (FPF) probe and Ag nanoparticles (AgNPs) into polyvinyl alcohol (PVA) microgels. The smart microgels exhibit ultra-sensitive (detection limit 10% v/v) and reversible response towards water due to the liner relationship between network volume and SERS performance of the microgels. Furthermore, the presence of water triggers the conversion of FPF to aldehyde hydrate, facilitating visual assay of trace water in matrix samples through the enhanced fluorescence signals. Interestingly, the SERS signals can be precisely tuned by the thermo-sensitive microgels substrate, thus achieving the temperature monitoring from 32 to 50 °C. The microgels-based sensor has fast-response (2 min), excellent stability, and enables accurate and reliable response of water in organic solvent and pharmaceutical products. As a smart and flexible sensor, the hybrid microgels will facilitate the field of POC analysis, as well as molecular recognition in the future.

摘要

刺激响应性微凝胶的设计与应用仍处于起步阶段,但在可控传感装置领域是一个令人兴奋的话题。在此,我们通过将4,4'-二巯基偶氮苯(DMAB)、中-甲酰基-1,3,5,7-四甲基卟啉硼氟酸盐(FPF)探针和银纳米颗粒(AgNPs)原位封装到聚乙烯醇(PVA)微凝胶中,构建了一个双响应平台,该平台能够对水和温度进行灵敏的现场荧光分析以及可靠的表面增强拉曼散射(SERS)定量分析。由于微凝胶的网络体积与SERS性能之间存在线性关系,这种智能微凝胶对水表现出超灵敏(检测限为10% v/v)且可逆的响应。此外,水的存在会触发FPF向醛水合物的转化,通过增强的荧光信号有助于对基质样品中的痕量水进行可视化检测。有趣的是,SERS信号可通过热敏微凝胶底物进行精确调节,从而实现32至50°C的温度监测。基于微凝胶的传感器具有快速响应(2分钟)、出色的稳定性,能够对有机溶剂和药品中的水做出准确可靠的响应。作为一种智能且灵活的传感器,这种混合微凝胶将推动即时检测(POC)分析领域以及未来的分子识别发展。

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