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Pyrene Derivative Emitting Red or near-Infrared Light with Monomer/Excimer Conversion and Its Application to Ratiometric Detection of Hypochlorite

机译:Mono /准分子转换的Red衍生物发射红光或近红外光及其在次氯酸盐比例检测中的应用

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摘要

Fluorescent sensors are attractive and versatile tools for both chemical sensing and biological imaging. Herein, a novel pyrene derivative fluorophore, Py-Cy, possessing the monomer/excimer conversion feature, was synthesized; and the design rationale for this fluorophore is combination of extending conjugation length and incorporating donor-Pi-acceptor structure. The positively charged Py-Cy shows quite good water solubility and exhibits absorption in the visible-light range, and its monomer and excimer emit red light and near-infrared light respectively, which is extremely beneficial for biosensing or bioimaging. To explore the potential utilization of this new fluorophore, we choose hypochlorite as a model analyte, which can break the double bond in the molecular structure, thereby generating the water-insoluble pyrenecarboxaldehyde; this process correspondingly leads to fluorescence changes and thus affords the ratiometric fluorescent detection of hypochlorite in real samples and cell imaging. The approach offers new insights for designing other fluorophores which emit red or near-infrared light and for devising technically simple ratiometric fluorescent sensors.
机译:荧光传感器是用于化学传感和生物成像的有吸引力且用途广泛的工具。本文合成了具有单体/准分子转化特征的新型pyr衍生物荧光团Py-Cy。该荧光团的设计原理是结合长度的延长和结合供体-Pi-受体结构的结合。带正电的Py-Cy具有很好的水溶性,并在可见光范围内具有吸收能力,其单体和受激准分子分别发出红光和近红外光,这对生物传感或生物成像极为有利。为了探索这种新型荧光团的潜在利用,我们选择次氯酸盐作为模型分析物,它可以破坏分子结构中的双键,从而生成水不溶性pyr甲醛。该过程相应地导致荧光变化,从而提供了真实样品中次氯酸盐的比例荧光检测和细胞成像。该方法为设计发射红色或近红外光的其他荧光团以及设计技术上简单的比例荧光传感器提供了新的见识。

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