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Fluorescence Characteristics of Aqueous Synthesized Tin Oxide Quantum Dots for the Detection of Heavy Metal Ions in Contaminated Water

机译:水性合成氧化锡量子点的荧光特性用于检测污水中的重金属离子

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摘要

Tin oxide quantum dots were synthesized in aqueous solution via a simple hydrolysis and oxidation process. The morphology observation showed that the quantum dots had an average grain size of 2.23 nm. The rutile phase SnO2 was confirmed by the structural and compositional characterization. The fluorescence spectroscopy of quantum dots was used to detect the heavy metal ions of Cd2+, Fe3+, Ni2+ and Pb2+, which caused the quenching effect of photoluminescence. The quantum dots showed the response of 2.48 to 100 ppm Ni2+. The prepared SnO2 quantum dots exhibited prospective in the detection of heavy metal ions in contaminated water, including deionized water, deionized water with Fe3+, reclaimed water and sea water. The limit of detection was as low as 0.01 ppm for Ni2+ detection. The first principle calculation based on the density function theory demonstrated the dependence of fluorescence response on the adsorption energy of heavy metal ions as well as ion radius. The mechanism of fluorescence response was discussed based on the interaction between Sn vacancies and Ni2+ ions. A linear correlation of fluorescence emission intensity against Ni2+ concentration was obtained in the logarithmic coordinates. The density of active Sn vacancies was the crucial factor that determined fluorescence response of SnO2 QDs to heavy metal ions.
机译:通过简单的水解和氧化过程在水溶液中合成了氧化锡量子点。形态观察表明,量子点的平均晶粒尺寸为2.23nm。金红石相SnO2通过结构和组成表征得到证实。量子点的荧光光谱用于检测Cd 2 + ,Fe 3 + ,Ni 2 + 和Pb < sup> 2 + ,引起光致发光的猝灭作用。量子点显示出2.48对100 ppm Ni 2 + 的响应。制备的SnO2量子点在检测去离子水,Fe 3 + 的去离子水,再生水和海水中的重金属离子中具有广阔的应用前景。 Ni 2 + 的检出限低至0.01 ppm。基于密度函数理论的第一原理计算证明了荧光响应对重金属离子的吸附能以及离子半径的依赖性。基于锡空位与Ni 2 + 离子的相互作用,探讨了荧光反应的机理。在对数坐标下,荧光强度与Ni 2 + 浓度呈线性关系。活性锡空位的密度是决定SnO2量子点对重金属离子的荧光响应的关键因素。

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