Journal Article10.1016/j.ccr.2022.214707
Luminescent Lanthanide Metal Organic Frameworks (LnMOFs): A Versatile Platform towards Organomolecule Sensing
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TL;DR: Lanthanide metal-organic frameworks (LnMOFs) have shown remarkable promise for detecting organomolecules with high accuracy because of their easy tunability, functionality, and design ability as discussed by the authors .
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About: This article is published in Coordination Chemistry Reviews. The article was published on 01 Nov 2022. The article focuses on the topics: Chemistry & Lanthanide.
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Citations
pH-stable MOFs: Design principles and applications
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TL;DR: In this article , a review of pH-stable metal-organic frameworks (MOFs) can be found in terms of design principles and directed application domains, where five major application areas where pH stable MOFs are intended to deploy have been identified.
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Recent advances of polyoxometalates-based lanthanide-oxo clusters
Shurong Li,Weiduo Liu,La-Sheng Long,Lan-Sun Zheng,Xiang-Jian Kong +4 more
- 01 Dec 2022
TL;DR: In this paper , the authors summarize the classification, synthesis strategies, and properties of polyoxometalate-based lanthanide-oxo clusters (LnOCs) and classify them into three main categories according to their metal core element type and quantity.
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A Water-Stable Cationic SIFSIX MOF for Luminescent Probing of Cr2 O7 2- via Single-Crystal to Single-Crystal Transformation.
TL;DR: A water-stable SIFSIX MOF exhibits high sensitivity and selectivity for Cr2 O7 2- sensing in aqueous media through fluorescence quenching.
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Ultra-low limit of luminescent detection of gossypol by terbium(III)-based metal-organic framework
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pH-Stable Zn(II) Coordination Polymer as a Multiresponsive Turn-On and Turn-Off Fluorescent Sensor for Aqueous Medium Detection of Al(III) and Cr(VI) Oxo-Anions.
TL;DR: A pH-stable Zn(II) coordination polymer, IITKGP-70, is developed as a multiresponsive fluorescent sensor for aqueous medium detection of Al(III) and Cr(VI) oxo-anions, exhibiting high selectivity, sensitivity, and recyclability with LOD values ranging from 0.27 to 1.29 μM.
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References
Luminescent lanthanide–organic polyrotaxane framework as a turn-off sensor for nitrobenzene and Fe3+
TL;DR: In this article, three isomorphous lanthanide-organic polyrotaxane frameworks [Ln(mtpc)1.5(DMA)(H2O)]·2H 2O were assembled and characterized, and the mtpc ligand transfer absorbed energy to Tb3+ center to emit characteristic fluorescence.
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A hydrostable samarium(III)-MOF sensor for the sensitive and selective detection of tryptophan based on a "dual antenna effect".
TL;DR: A 3D network metal-organic framework with excellent thermal and water stability was synthesized by a hydrothermal method and showed high detection sensitivity (LOD = 330 nM) and outstanding anti-interference ability.
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Rapid switch-on fluorescent detection of nanomolar-level hydrazine in water by a diacetoxy-functionalized MOF: application in paper strips and environmental samples.
TL;DR: A new diacetoxy-functionalized UiO-66 metal-organic framework (MOF) for the trace level detection of hydrazine in water shows a highly selective fluorescent turn-on signal towards hydrazin in water, which can be visualized by the naked eye under a UV lamp.
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Five Lanthanide-Based Metal–Organic Frameworks Built from a π-Conjugated Ligand with Isophthalate Units Featuring Sensitive Fluorescent Sensing for DMF and Acetone Molecules
TL;DR: In this article, a π-conjugated ligand with tetracarboxylate group, 5,5′-(naphthalene-1,5-diyl)diisophthalic acid, has been synthesized solvothermally.
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