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One-pot synthesis of a quantum dot-based molecular imprinting nanosensor for highly selective and sensitive fluorescence detection of 4-nitrophenol in environmental waters

机译:一锅合成基于量子点的分子印迹纳米传感器,用于环境水中的4-硝基苯酚的高选择性和灵敏荧光检测

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摘要

A novel molecular imprinting fluorescence nanosensor was constructed via a facile surface imprinting polymerization one-pot synthesis strategy for highly selective and sensitive recognition and detection of 4-nitrophenol (4-NP) based on an electron-transfer induced fluorescence quenching mechanism. 2-Aminoethyl methacrylate hydrochloride (AMA) was first used as a surfactant to interact with aqueous carboxyl-CdTe quantum dots (QDs) and the resultant AMA-modified QDs were used as a core support and a fluorescent signal source. Then, an ultrathin 4-NP imprinted shell (ca. 4 nm) was formed on the QD surface (i.e., QD@MIPs) by a simple facile free radical polymerization step. The one-pot synthesis simplified the imprinting process and shortened the experimental period. The imprinted sites bound the template of 4-NP efficiently through the hydrogen bonding interactions and showed excellent recognition selectivity for 4-NP over its analogues with a high imprinting factor of 9.1. The electron transfer process between QDs and 4-NP led to significant fluorescence quenching of the QD@MIPs nanosensor, by which 4-NP could be sensed, and high detection sensitivity up to 0.051 mu M was attained. Furthermore, the sensor was successfully applied to determine 4-NP in seawater and lake water samples, presenting high recoveries in the range of 92.7-109.2% at three spiking levels with the relative standard deviation within 3.1-4.8%. The simple, rapid, reliable QD@MIPs-based method proved to be potentially applicable for the highly selective and sensitive fluorescence determination of trace 4-NP in complicated environmental water samples.
机译:通过一种简便的表面印迹聚合一锅合成策略,基于电子转移诱导的荧光猝灭机理,对4-硝基苯酚(4-NP)进行高度选择性和灵敏的识别和检测,构建了一种新型的分子印迹荧光纳米传感器。首先将甲基丙烯酸2-氨基乙酯盐酸盐(AMA)用作表面活性剂,以与羧基CdTe水溶液量子点(QD)相互作用,然后将所得AMA修饰的QD用作核心载体和荧光信号源。然后,通过简单的容易的自由基聚合步骤在QD表面(即,QD @ MIP)上形成超薄的4-NP印迹壳(约4nm)。一锅法合成简化了印迹过程并缩短了实验周期。印迹的位点通过氢键相互作用有效地结合了4-NP的模板,并且显示出对4-NP的识别选择性优于其类似物,具有9.1的高印迹因子。 QDs和4-NP之间的电子转移过程导致QD @ MIPs纳米传感器发生显着的荧光猝灭,从而可以检测到4-NP,并获得高达0.051μM的高检测灵敏度。此外,该传感器已成功应用于海水和湖水样品中的4-NP测定,在三个加标水平上的高回收率在92.7-109.2%范围内,相对标准偏差在3.1-4.8%之内。简单,快速,可靠的基于QD @ MIPs的方法被证明可能适用于复杂环境水样中痕量4-NP的高选择性和灵敏荧光测定。

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