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CdS QDs/N-甲基吡咯烷酮聚合物杂化材料作为荧光探针用于检测苦味酸的超灵敏和选择性

CdS QDs/N-methylpolypyrrole hybrids as fluorescent probe for ultrasensitive and selective detection of picric acid.

机构信息

Department of Chemistry, Faculty of Basic Sciences, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

Department of Chemistry, Faculty of Basic Sciences, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2019 Jun 5;216:230-235. doi: 10.1016/j.saa.2019.03.032. Epub 2019 Mar 14.

Abstract

Inorganic-organic hybrids are an advanced class of luminescent materials showing great promise for fabrication of highly sensitive and selective optical sensors. In the present study, a novel CdS quantum dots/N-methylpolypyrrole (CdS QDs/NMPPY) hybrid was synthesized via the direct polymerization of NMPPY on L-cysteine capped CdS QD aggregates. A number of characterization techniques including FTIR, DLS, FESEM, UV-vis, and fluorescence spectroscopies were used to study the chemical composition, morphology and optical properties of the resultant QDs/polymer hybrid. The as-synthesized CdS QDs/NMPPY hybrid shows a bright emission at 459 nm under excitation at 367 nm in water. Also the results show the role of sodium dodecyl benzenesulfonate (SDBS) to control the mechanism of synthesis and spectroscopic of the prepared CdS/NMPPY hybrid. Moreover, in this work was reported the direct hybridization procedure without other modification such as ligand exchange and coating. We demonstrated that the hybridization of CdS QDs with NMPPY polymer leads to a significant change in fluorescence sensing properties toward nitroaromatic compounds. Further studies unveiled that the emission of CdS QDs/NMPPY hybrid is strongly and selectively quenched by picric acid molecule with a large Stern-Volmer constant of 843,900 M and an excellent detection limit of 4.6 × 10 M. The changes in the UV-vis spectra of picric acid solutions in the presence and absence of CdS QDs/NMPPY hybrid displayed that the fluorescence quenching occurs through a static quenching mechanism. Finally, the proposed CdS QDs/NMPPY sensor was successfully utilized to determine the amount of picric acid in real water samples.

摘要

无机-有机杂化材料是一类先进的发光材料,在制备高灵敏度和选择性光学传感器方面具有广阔的应用前景。在本研究中,通过在 L-半胱氨酸封端的 CdS QD 聚集体上直接聚合 NMPPY,合成了一种新型的 CdS 量子点/N-甲基吡咯烷酮(CdS QDs/NMPPY)杂化材料。采用傅里叶变换红外光谱(FTIR)、动态光散射(DLS)、场发射扫描电子显微镜(FESEM)、紫外-可见吸收光谱(UV-vis)和荧光光谱等多种表征技术研究了所得 QDs/聚合物杂化材料的化学组成、形貌和光学性质。在水中,CdS QDs/NMPPY 杂化材料在 367nm 激发下于 459nm 处发出明亮的发射光。此外,结果表明,十二烷基苯磺酸钠(SDBS)的作用是控制合成机制和所制备的 CdS/NMPPY 杂化材料的光谱。此外,在这项工作中,报告了无需其他修饰(如配体交换和涂层)的直接杂化程序。我们证明,CdS QDs 与 NMPPY 聚合物的杂交导致其对硝基芳烃化合物的荧光传感性质发生显著变化。进一步的研究表明,CdS QDs/NMPPY 杂化材料的发射强烈且选择性地被苦味酸分子猝灭,其斯特恩-沃尔默常数为 843900M,检测限低至 4.6×10M。在存在和不存在 CdS QDs/NMPPY 杂化材料的情况下,苦味酸溶液的紫外-可见光谱的变化表明荧光猝灭是通过静态猝灭机制发生的。最后,成功地将所提出的 CdS QDs/NMPPY 传感器用于测定实际水样中的苦味酸含量。

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