Achieving On–Off Ratiometric Luminescence Dynamics in a Nanoporous Eu(III) Metal–Organic Framework for Neopterin Detection

IF 5.3 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Er-Li Wang, Ling Li, Ji-Yong Zou, Chao Hong, Li Zhang, Sheng-Yong You
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Abstract

Thanks to the superior photoluminescence performance of the lanthanide(III) ions sensitized by the organic ligands via an “antenna effect” and the host–guest interactions between a MOF material and the targeted analytes, a nanoporous lanthanide(III) MOF material can achieve the luminescence dynamics performance through the influence of lanthanide(III) ions and the targeted analytes, thus endowing a nanoporous lanthanide(III) MOF material with superior ratiometric luminescence sensing application. Consequently, a 3D nanoporous Eu(III) based MOF material, {[Eu(BPDC)(μ3–OH)(H2O)]·H2O·DMF}n (Eu-MOF, 2,2′-bipyridine-4,4′-dicarboxylic acid = H2BPDC), assembled by H2BPDC ligand and Eu3+ ions for achieving on–off ratiometric luminescence dynamics performance of inflammatory marker neopterin (Neo) detection, has been fabricated. The nanoporous Eu-MOF material is consist of 1D Eu(μ3–OH) chains, which could further be connected by the deprotonated H2BPDC ligands to build a 3D framework, showing a nanosized aperture of ca. 12.6 Å × 12.6 Å along the a-direction. The luminescence titration experiments demonstrate that Eu-MOF can exhibit simultaneous photoluminescence behavior of Eu3+ ions and Neo, and achieve on–off ratiometric luminescence dynamics performance by regulating the host–guest interactions. More importantly, the visible color change observation from red to bluish violet by the naked eyes in response to the concentrations of Neo can be an indicator of facile Neo detection, achieved by luminescent test strips and portable hydrogels. A combination of competitive absorption and host–guest interactions between Eu-MOF material and Neo can contribute to on–off ratiometric luminescence dynamics performance of Eu-MOF material for Neo detection, confirmed by UV–vis spectral overlap experiment and density functional theory calculations.

Abstract Image

在用于检测蝶呤的纳米多孔 Eu(III)金属有机框架中实现开关比发光动力学
由于有机配体通过 "天线效应 "敏化的镧系元素(III)离子具有优异的光致发光性能,以及 MOF 材料与目标分析物之间的主客体相互作用,纳米多孔镧系元素(III)MOF 材料可以通过镧系元素(III)离子和目标分析物的影响实现发光动力学性能,从而使纳米多孔镧系元素(III)MOF 材料具有优异的比率发光传感应用。因此,一种基于 Eu(III)的三维纳米多孔 MOF 材料{[Eu(BPDC)(μ3-OH)(H2O)]-H2O-DMF}n(Eu-MOF,2,2′-联吡啶-4,4′-二羧酸 = H2BPDC)、该材料由 H2BPDC 配体和 Eu3+ 离子组装而成,用于实现炎症标志物新蝶呤(Neo)检测的开关比率发光动力学性能。纳米多孔 Eu-MOF 材料由一维 Eu(μ3-OH)链组成,这些 Eu(μ3-OH)链可通过去质子化的 H2BPDC 配体进一步连接成三维框架,沿 a 方向呈现出约 12.6 Å × 12.6 Å 的纳米孔径。发光滴定实验证明,Eu-MOF 可同时表现出 Eu3+ 离子和 Neo 的光致发光行为,并通过调节主客体之间的相互作用实现开关比发光动力学性能。更重要的是,肉眼观察到的从红色到蓝紫色的可见光颜色变化会对 Neo 的浓度做出反应,这可以作为一个指标,通过发光试纸和便携式水凝胶实现对 Neo 的便捷检测。紫外可见光谱重叠实验和密度泛函理论计算证实,Eu-MOF 材料与 Neo 之间的竞争吸收和主客体相互作用相结合,有助于 Eu-MOF 材料用于 Neo 检测的开关比率发光动力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.30
自引率
3.40%
发文量
1601
期刊介绍: ACS Applied Nano Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics and biology relevant to applications of nanomaterials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important applications of nanomaterials.
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