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基于具有激发态质子转移过程的合成后功能化二维锌基金属有机框架纳米片的多分析物荧光传感。

Multi-analyte fluorescence sensing based on a post-synthetically functionalized two-dimensional Zn-MOF nanosheets featuring excited-state proton transfer process.

作者信息

Yin Shu-Hui, Lan Bi-Liu, Yang Ya-Li, Tong Yu-Qing, Feng Yan-Fang, Zhang Zhong

机构信息

School of Chemistry and Pharmaceutical Sciences, State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guilin 541004, PR China.

School of Chemistry and Pharmaceutical Sciences, State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guilin 541004, PR China; College of Pharmacy, Guilin Medical University, Guilin 541199, PR China.

出版信息

J Colloid Interface Sci. 2024 Mar;657:880-892. doi: 10.1016/j.jcis.2023.12.040. Epub 2023 Dec 11.

Abstract

Covalent post-synthetic modification of metal-organic frameworks (MOFs) represents an underexplored but promising avenue for allowing the addition of specific fluorescent recognition elements to produce the novel MOF-based sensory materials with multiple-analyte detection capability. Here, an excited-state proton transfer (ESPT) active sensor 2D-Zn-NS-P was designed and constructed by covalent post-synthetic incorporation of the excited-state tautomeric 2-hydroxypyridine moiety into the ultrasonically exfoliated amino-tagged 2D Zn-MOF nanosheets (2D-Zn-NS). The water-mediated ESPT process facilitates the highly accessible active sites incorporated on the surface of 2D-Zn-NS-P to specifically respond to the presence of water in common organic solvents via fluorescence turn-on behavior, and accurate quantification of trace amount of water in acetonitrile, acetone and ethanol was established using the as-synthesized nanosheet sensor with the detection sensitivity (<0.01% v/v) superior to the conventional Karl Fischer titration. Upon exposure to Fe or CrO, the intense blue emission of the aqueous colloidal dispersion of 2D-Zn-NS-P was selectively quenched even in the coexistence of common inorganic interferents. The prohibition of the water-mediated ESPT process and local emission, induced by the coordination of ESPT fluorophore with Fe or by CrO competitively absorbs the excitation energy, was proposed to responsible for the fluorescence turn-off sensing of the respective analytes. The present study offers the attractive prospect to develop the ESPT-based fluorescent MOF nanosheets by covalent post-synthetic modification strategy as multi-functional sensors for detection of target analytes.

摘要

金属有机框架材料(MOFs)的共价合成后修饰是一条尚未充分探索但前景广阔的途径,可用于添加特定的荧光识别元件,以制备具有多分析物检测能力的新型MOF基传感材料。在此,通过将激发态互变异构的2-羟基吡啶部分共价合成后掺入超声剥离的氨基标记二维Zn-MOF纳米片(2D-Zn-NS)中,设计并构建了一种激发态质子转移(ESPT)活性传感器2D-Zn-NS-P。水介导的ESPT过程促进了2D-Zn-NS-P表面高度可及的活性位点通过荧光开启行为对常见有机溶剂中水的存在作出特异性响应,并且使用合成的纳米片传感器对乙腈、丙酮和乙醇中的痕量水进行了准确定量,其检测灵敏度(<0.01% v/v)优于传统的卡尔费休滴定法。暴露于Fe或CrO时,即使在常见无机干扰物共存的情况下,2D-Zn-NS-P水性胶态分散体的强烈蓝色发射也会被选择性猝灭。ESPT荧光团与Fe配位或CrO竞争性吸收激发能量导致水介导的ESPT过程和局域发射被禁止,被认为是各自分析物荧光猝灭传感的原因。本研究为通过共价合成后修饰策略开发基于ESPT的荧光MOF纳米片作为检测目标分析物的多功能传感器提供了诱人的前景。

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