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使用基于稀土金属有机框架的萃取和传感吸附剂改性的可调节3D打印平台对四环素进行正面荧光检测。

Front-face fluorescence of tetracyclines using a modulable 3D-printed platform modified with an extraction and sensing sorbent based on rare-earth metal-organic frameworks.

作者信息

Alcázar-Escobedo Laura, Campillo-Tamarit Noelia, Simó-Alfonso Ernesto Francisco, Carrasco-Correa Enrique Javier

机构信息

CLECEM Group, Department of Analytical Chemistry, University of Valencia, 46100, Burjassot, Valencia, Spain.

出版信息

Mikrochim Acta. 2025 Jun 8;192(7):410. doi: 10.1007/s00604-025-07274-y.

Abstract

A stereolithographically modulable 3D-printed platform modified with a fluorescent metal-organic framework (MOF) has been developed for the selective recognition and extraction of tetracyclines, enabling their detection via front-face fluorescence spectroscopy. For this purpose, the MOF was grown in situ on the 3D-printed surface, which was previously functionalized with 2-aminoterephthalic acid, allowing the resulting composite to act as both sorptive and sensing material. Structural and morphological characterization of the MOF onto the 3D-printed device was performed using X-ray powder diffraction, scanning electron microscopy, infrared spectroscopy, and fluorescence analysis. The key advantage of the presented device is its full compatibility with conventional fluorometers, requiring no instrumental modifications since it fits directly into a standard cuvette holder. Additionally, the ability to perform measurements directly in the solid state, minimizing matrix effects thanks to the 3D-printed device functionalized with the MOF, offers a significant improvement over traditional methodologies. According to the Stern-Volmer model, the platform achieves good detection limits (1.8 and 0.5 μg L in seawater and milk, respectively), inter-device variability below 12% and recoveries  exceeding 94%. Fabrication is cost-effective, with each complete unit costing only €1.60 including 3D printing, reagents, and labor (€0.5 per impact zone piece).

摘要

一种用荧光金属有机框架(MOF)修饰的立体光刻可调制3D打印平台已被开发出来,用于四环素的选择性识别和提取,从而能够通过正面荧光光谱法对其进行检测。为此,MOF在3D打印表面原位生长,该表面先前已用2-氨基对苯二甲酸进行功能化处理,使得所得复合材料既能作为吸附材料又能作为传感材料。使用X射线粉末衍射、扫描电子显微镜、红外光谱和荧光分析对3D打印设备上的MOF进行了结构和形态表征。所展示设备的关键优势在于它与传统荧光计完全兼容,由于它可以直接放入标准比色皿支架中,因此无需对仪器进行修改。此外,由于用MOF功能化的3D打印设备能够直接在固态下进行测量,最大限度地减少了基质效应,这比传统方法有了显著改进。根据斯特恩-沃尔默模型,该平台实现了良好的检测限(海水中为1.8 μg/L,牛奶中为0.5 μg/L),设备间变异性低于12%,回收率超过94%。制造具有成本效益,每个完整单元的成本仅为1.60欧元,包括3D打印、试剂和人工成本(每个冲击区部件0.5欧元)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3000/12145305/1de2d47a0fd5/604_2025_7274_Fig1_HTML.jpg

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