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首页> 外文期刊>Analytical and bioanalytical chemistry >Synthesis of molecularly imprinted fluorescent probe based on biomass-derived carbon quantum dots for detection of mesotrione
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Synthesis of molecularly imprinted fluorescent probe based on biomass-derived carbon quantum dots for detection of mesotrione

机译:基于生物质衍生的碳量子点的分子印迹荧光探针的合成检测中的Mesotrione

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摘要

A novel fluorescent probe based on molecularly imprinted polymers (MIPs) coupled with carbon quantum dots (CQDs) was fabricated and successfully used for selective recognition of mesotrione. In this probe, the biomass-derived CQDs were prepared through a hydrothermal method using mango peels as carbon source, and the whole synthesis procedure was green without chemical reagents. The CQDs were encapsulated into MIPs by using sol-gel technology. After removal of the template molecule mesotrione, specific binding sites are formed and there is electrostatic attraction between the probe and the template molecule. The synthetic CQDs@MIPs were able to selectively capture the target mesotrione with fluorescence quenching via the specific interaction between mesotrione and the recognition cavities. The probe was used for determination of mesotrione in corn to verify the practicality of the proposed method. The detection limit of mesotrione was 4.7 nmol L-1, and the linear range was 15 nmol L-1 to 3000 nmol L-1. Meanwhile, the recoveries of this method for mesotrione were 91.4-96.2%, and the relative standard deviations (RSDs) were 3.2-6.1%. This work provides a novel research method to synthesize CQDs@MIPs with high selectivity (imprinting factor = 5.6), and which can be used for convenient, rapid recognition and sensitive detection of trace compounds from complex matrices.
机译:制备基于分子印迹聚合物(MIPS)的新型荧光探针与碳量子点(CQD)合成,并成功地用于选择性识别中硫酮。在该探针中,通过使用芒果剥离作为碳源的水热法制料制备生物质衍生的CQD,并且整个合成程序是绿色而无需化学试剂。通过使用溶胶 - 凝胶技术将CQD封装到MIPS中。在去除模板分子中,形成特异性结合位点,探针和模板分子之间存在静电吸引。合成的CQDS @ MIPS能够通过MESOTRIONE和识别腔之间的特定相互作用选择性地捕获具有荧光猝灭的靶细胞周期。探针用于测定玉米中的Mesotrione以验证所提出的方法的实用性。 Mesotrione的检出限为4.7 nmol L-1,线性范围为15nmol L-1至3000nmol L-1。同时,该方法的核心方法的回收率为91.4-96.2%,相对标准偏差(RSD)为3.2-6.1%。这项工作提供了一种新的研究方法,用于合成具有高选择性(印迹因子= 5.6)的CQDS @ MIPS,可用于从复杂基质的痕量化合物的方便,快速识别和敏感检测。

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