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用于羟基/钴传感及数据安全的聚乙烯醇表面原位飞秒激光诱导荧光团

In Situ Femtosecond-Laser-Induced Fluorophores on Surface of Polyvinyl Alcohol for HO/Co Sensing and Data Security.

作者信息

Chen Weiliang, Gao Jichao, Tian Jie, Zhang Jingyu

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Sensors (Basel). 2021 Nov 22;21(22):7755. doi: 10.3390/s21227755.

Abstract

In situ fluorophores were induced on polyvinyl alcohol (PVA) bulk materials by direct femtosecond laser writing. The generation of fluorophores was ascribed to localized laser-assisted carbonization. The carbonization of PVA polymers was confirmed through X-ray photoelectron spectroscopy analysis. The distinct fluorescence responses of fluorophores in various solutions were harnessed for implementing in situ reagent sensors, metal ion sensors, data encryption, and data security applications. The demonstrated water detection sensor in acetone exhibited a sensitivity of 3%. Meanwhile, a data encryption scheme and a "burn after reading" technique were demonstrated by taking advantage of the respective reversible and irreversible switching properties of the in situ laser-induced fluorophores. Taking a step further, a quantitative cobalt ion measurement was demonstrated based on the concentration-dependent fluorescence recovery. Combined with a laser-induced hydrophilic modification, our scheme could enable "lab-on-a-chip" microfluidics sensors with arbitrary shape, varied flow delay, designed reaction zones, and targeted functionalities in the future.

摘要

通过直接飞秒激光写入在聚乙烯醇(PVA)块状材料上诱导原位荧光团。荧光团的产生归因于局部激光辅助碳化。通过X射线光电子能谱分析证实了PVA聚合物的碳化。利用荧光团在各种溶液中的独特荧光响应来实现原位试剂传感器、金属离子传感器、数据加密和数据安全应用。所展示的丙酮中的水检测传感器灵敏度为3%。同时,利用原位激光诱导荧光团各自的可逆和不可逆切换特性,展示了一种数据加密方案和一种“读后即焚”技术。更进一步,基于浓度依赖性荧光恢复展示了钴离子的定量测量。结合激光诱导的亲水性修饰,我们的方案未来能够实现具有任意形状、可变流动延迟、设计反应区和目标功能的“芯片实验室”微流控传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca7f/8625953/d62498040dad/sensors-21-07755-g001.jpg

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