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嵌入金属有机框架中的分子印迹聚合物包覆的锰掺杂硫化锌量子点作为毒死蜱选择性室温磷光检测的探针。

Molecularly imprinted polymer coated Mn-doped ZnS quantum dots embedded in a metal-organic framework as a probe for selective room temperature phosphorescence detection of chlorpyrifos.

作者信息

Fan Mengxi, Gan Tingting, Yin Gaofang, Cheng Fangbeibei, Zhao Nanjing

机构信息

Information Materials and Intelligent Sensing Laboratory of Anhui Province, Institutes of Physical Science and Information Technology, Anhui University Hefei Anhui 230601 China

Key Laboratory of Environmental Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences 350 Shu Shan Hu Road Hefei Anhui 230031 China

出版信息

RSC Adv. 2021 Aug 17;11(45):27845-27854. doi: 10.1039/d1ra05537b. eCollection 2021 Aug 16.

Abstract

As one of the most widely used organophosphorus pesticides, chlorpyrifos (CPF) is toxic to humans. However, the rapid, effective and sensitive detection of CPF is still a challenge. In this paper, a novel molecularly imprinted phosphorescent sensor with a core-shell structure (Mn:ZnS QDs@ZIF-8@MIP) using Mn:ZnS quantum dots (QDs) as phosphorescent emitters was prepared for the highly sensitive and selective detection of CPF, and a simple and rapid room-temperature phosphorescence (RTP) detection method for CPF was proposed. For the prepared Mn:ZnS QDs@ZIF-8@MIP, Mn:ZnS QDs had good phosphorescence emission characteristics, ZIF-8 as support materials was used to improve the dispersibility of Mn:ZnS QDs, and molecularly imprinted polymer (MIP) on the surface of ZIF-8 was used to improve the selectivity of Mn:ZnS QDs for CPF. Under the optimal response conditions, the RTP intensity of Mn:ZnS QDs@ZIF-8@MIP showed a rapid response to CPF (less than 5 min), the RTP intensity ratio of / had a good linear relationship with the concentration of CPF in the range of 0-80 μM, and the detection limit of this method was 0.89 μM with the correlation coefficient of 0.99. Moreover, this simple and rapid method has been successfully used to detect CPF in real water samples with satisfactory results, and the recoveries ranged from 92% to 105% with a relative standard deviation of less than 1%. This method combines the advantages of phosphorescence emission and molecular imprinting, and greatly reduces the potential interferences of competitive substances, background fluorescence and scattered light, which opens up a broad prospect for the highly sensitive and selective detection of pollutants in water based on molecularly imprinted phosphorescent sensors.

摘要

作为使用最广泛的有机磷农药之一,毒死蜱(CPF)对人体有毒。然而,快速、有效且灵敏地检测CPF仍然是一项挑战。本文制备了一种以Mn:ZnS量子点(QDs)为磷光发射体的具有核壳结构的新型分子印迹磷光传感器(Mn:ZnS QDs@ZIF-8@MIP)用于高灵敏和选择性地检测CPF,并提出了一种简单快速的CPF室温磷光(RTP)检测方法。对于制备的Mn:ZnS QDs@ZIF-8@MIP,Mn:ZnS QDs具有良好的磷光发射特性,ZIF-8作为载体材料用于提高Mn:ZnS QDs的分散性,ZIF-8表面的分子印迹聚合物(MIP)用于提高Mn:ZnS QDs对CPF的选择性。在最佳响应条件下,Mn:ZnS QDs@ZIF-8@MIP的RTP强度对CPF呈现快速响应(小于5分钟), / 的RTP强度比与0 - 80 μM范围内CPF的浓度具有良好的线性关系,该方法的检测限为0.89 μM,相关系数为0.99。此外,这种简单快速的方法已成功用于实际水样中CPF的检测,结果令人满意,回收率在92%至105%之间,相对标准偏差小于1%。该方法结合了磷光发射和分子印迹的优点,大大降低了竞争性物质、背景荧光和散射光的潜在干扰,为基于分子印迹磷光传感器高灵敏和选择性地检测水中污染物开辟了广阔前景。

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