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首页> 外文期刊>ACS applied materials & interfaces >Proton-Triggered Fluorescence Switching in Self-Exfoliated Ionic Covalent Organic Nanosheets for Applications in Selective Detection of Anions
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Proton-Triggered Fluorescence Switching in Self-Exfoliated Ionic Covalent Organic Nanosheets for Applications in Selective Detection of Anions

机译:自剥离离子共价有机纳米片中的质子触发荧光切换,用于选择性检测阴离子的应用

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摘要

The exfoliation of covalent organic frameworks into covalent organic nanosheets (CONs) not only helps to reduce fluorescence turn-off phenomena but also provides well-exposed active sites for fast response and recovery for various applications. The present work is an example of rational designing of a structure constructed by condensing triaminoguanidinium chloride (TG(Cl)), an intrinsic ionic linker, with a fluorophore, 2, 5-dimethoxyterephthalaldehyde (DA), to produce highly fluorescent self-exfoliable ionic CONs (DATG(Cl)-iCONs). These fluorescent iCONs are able to sense fluoride ions selectively down to the ppb level via the fluorescence turn-off mechanism. A closer look at the quenching mechanism via NMR, zeta potential measurement, lifetime measurement, and density functional theory calculations reveals unique proton-triggered fluorescence switching behavior of newly synthesized DATG(Cl)-iCONs.
机译:共价有机骨架的剥离进入共价有机纳米液(以下)不仅有助于减少荧光关断现象,而且还提供良好暴露的活性位点,用于各种应用的快速响应和恢复。 本作本作是通过冷凝三胺中胍(Tg(Cl)),具有荧光团,2,5-二甲氧基苯二甲醛(DA)的结构,由荧光团,2,5-二甲氧基苯二甲醛(DA)构成的结构的理性设计的一个例子。 缺点(DATG(CL)-ICONS)。 这些荧光图标能够通过荧光关断机构选择性地将氟离子感染至PPB水平。 仔细看看通过NMR,Zeta电位测量,寿命测量和密度泛函理论计算的淬火机制揭示了新合成的DATG(CL)-CONS的独特质子触发的荧光切换行为。

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