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Preparation of mesoporous silica/carbon quantum dots composite and its application in selective and sensitive Hg2+ detection

机译:中孔二氧化硅/碳量子点复合材料的制备及其在选择性和敏感HG2 +检测中的应用

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摘要

A luminescent composite was prepared by synthesizing carbon quantum dots (CQDs) in MCM-41, a mesoporous silica material, via a hydrothermal approach under different conditions. The luminescent composite (named MCM/CQDs) was characterized with multiple instrumental techniques including fluorescent spectrometry, UV-Vis spectroscopy, surface area and porosity analyzer, transmission electron microscopy and X-ray diffraction. The preparation condition had an impact on the mesoporous structure of MCM-41, which in turn could influence the properties of CQDs synthesized in MCM-41. The prepared MCM/CQDs samples were used to detect various heavy metal ions in solution. It was found that MCM/CQDs sample prepared at a specific condition was able to detect Hg2+ with high selectivity by reducing the interference of other heavy metal ions. Meanwhile, a high sensitivity of Hg2+ detection was achieved with a detection limit of 0.02 mu mol/L, probably due to the enrichment of Hg2+ by MCM-41 as confirmed by the ICP-MS analysis. This study offered a methodology to develop novel fluorescent sensors based on CQDs embedded mesoporous silica with enrichment ability and tunable fluorescent properties, which enabled application in heavy metal ion detection with high selectivity and sensitivity.
机译:通过在不同条件下通过水热方法合成MCM-41中的碳量子点(CQDS),通过在不同条件下合成碳量子点(CQDS)来制备发光复合材料。发光复合材料(名为MCM / CQDS)的特征在于具有多种仪器技术,包括荧光光谱法,UV-Vis光谱,表面积和孔隙度分析仪,透射电子显微镜和X射线衍射。制备条件对MCM-41的介孔结构产生影响,这反过来可能影响MCM-41中合成的CQD的性质。制备的MCM / CQDS样品用于检测溶液中的各种重金属离子。发现在特定条件下制备的MCM / CQDS样品能够通过降低其他重金属离子的干扰来检测Hg2 +,具有高选择性。同时,通过检测限为0.02μmmol/ l的检测限,实现了HG2 +检测的高灵敏度,可能是由于ICP-MS分析证实的MCM-41的HG2 +的富集。本研究提供了一种基于CQDS嵌入式中孔二氧化硅的新型荧光传感器的方法,该方法具有富集能力和可调谐荧光特性,这使得在重金属离子检测中具有高选择性和灵敏度的应用。

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