通过光诱导电子转移的铕金属氧化物框架的晶体生长和比例荧光调谐甲醛传感

IF 3.4 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Yuming Zhao, , , Dan Yue, , , Yongpeng Zhu, , , Rudie Zhang, , , Tuantian Zhang, , , Pengju Yin, , , Bowen Qin, , , Jinhui Liu*, , , Zhenling Wang*, , and , Yu Fu*, 
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引用次数: 0

摘要

结合金属有机骨架(mof)的潜在优势和镧系金属离子独特的发光行为,采用简单的室温晶体生长工艺合成了具有配体(λ = 431 nm)和Eu3+ (λ = 617 nm)双荧光发射的荧光探针(Eu-MOF, Eu-BDC-NH2)。得到的Eu-BDC-NH2晶体具有丰富的非配位氨基,可作为选择性识别甲醛(FA)的有效活性位点。由于氨基和相邻配体之间存在光致电子转移(PET), Eu-BDC-NH2中配体的荧光被关闭。引入FA后,氨基与FA相互作用,抑制PET过程,同时减弱增敏Eu3+的“天线效应”。因此,配体荧光被打开,而Eu3+荧光被减弱,使得高灵敏度的比例荧光检测FA成为可能。与单发射荧光光谱相比,Eu-BDC-NH2可以通过测量系统中两个波长的荧光强度之比实现内部自校准,克服信号波动,提供更准确可靠的信息。此外,通过集成智能手机,开发了一种智能传感系统,以增强FA检测的可视化,其中肉眼可见的荧光颜色从红色变为蓝色。具体而言,本研究采用了在室温下直接滴入的方法,不仅简化了实验合成过程,而且符合绿色化学的原则,从而为mof荧光探针的开发提供了新的视角和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Crystal Growth and Ratiometric Fluorescence Tuning of the Eu-Metal Oxide Framework for Formaldehyde Sensing via Photoinduced Electron Transfer

Crystal Growth and Ratiometric Fluorescence Tuning of the Eu-Metal Oxide Framework for Formaldehyde Sensing via Photoinduced Electron Transfer

Combining the potential advantages of metal–organic frameworks (MOFs) with the distinctive luminescent behavior of lanthanide metal ions, a fluorescence probe (Eu-MOF, Eu-BDC-NH2) with dual fluorescence emissions of ligand (λ = 431 nm) and Eu3+ (λ = 617 nm) is synthesized using a straightforward room-temperature crystal growth process. The obtained Eu-BDC-NH2 crystal possesses an abundance of uncoordinated amino groups, which serve as effective active sites for the selective recognition of formaldehyde (FA). Owing to the presence of photoinduced electron transfer (PET) between the amino group and the adjacent ligand, the fluorescence of the ligand in the Eu-BDC-NH2 is turned off. Upon the introduction of FA, the amino group interacts with FA, which inhibits the PET process and simultaneously diminishes the “antenna effect” of sensitizing Eu3+. Consequently, the ligand fluorescence is turned on, and the Eu3+ fluorescence is weakened, enabling the highly sensitive ratiometric fluorescence detection of FA. Compared with the single emission fluorescence spectrum, Eu-BDC-NH2 can achieve internal self-calibration by measuring the ratio of fluorescence intensity of the two wavelengths in the system to overcome signal fluctuations and provide more accurate and reliable information. Furthermore, by integrating smartphones, an intelligent sensing system has been developed to enhance the visualization of FA detection, where the fluorescence color visible to the naked eye shifts from red to blue. Specifically, this work utilizes a straightforward dripping method performed at room temperature, which not only simplifies the experimental synthesis process but also adheres to the principles of green chemistry, thereby offering a novel perspective and methodology for the development of MOF-based fluorescence probes.

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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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