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Quantum Dot-Based Headspace Single-Drop Microextraction Technique for Optical Sensing of Volatile Species

机译:基于量子点的顶空单滴微萃取技术用于挥发性物质的光学传感

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Core-shell CdSe/ZnS quantum dots (QDs) dispersed in a droplet of organic solvent have been applied for the first time as luminescent probes for the selective detection of volatile species. Luminescence quenching caused by volatile species was examined after their trapping onto a drop using the headspace single-drop microextraction (HS-SDME) approach along with microvolume fluorospectrometry. The novel method is characterized by low reagent and sample consumption, especially regarding QDs, a reduction about 500-fold for each analysis being attained in comparison with luminescent probing in aqueous phase using conventional luminescence spectrometers with 1 cm quartz cells for measurement. To assess QDs as luminescent probes along with HS-SDME, 14 volatile species were tried. Strong luminescence quenching (i.e., I_(0)/I > 2.5) was observed for species such as CH_(3)Hg~(+) and Se(IV) after hydridation with NaBH_(4). Moderate luminescent quenching (I_(0)/I approx= 2) was observed for species such as Hg(II) after its conversion into Hg(0), H_(2)S, and methylcyclopentadienyl-manganese tricarbonyl (MMT). Small luminescence quenching effects (i.e., 1 < I_(0)/I < 2) were caused by other hydride forming species such as As(III), Sb(III), Te(IV), and Bi(III), as well as SnBu_(4), volatile amines, and endosulfan. Detection limits of 6.3 X 10~(-9) and 1.6 X 10~(-7) M were obtained for Se(IV) and CH_(3)Hg~(+), respectively. Repeatability expressed as relative standard deviation (N velence 7) was about 5percent. QD-HS-SDME-(mu)volume-fluorospectrometry allows one to carry out matrix separation, preconcentration, and confinement of QDs, hence achieving a selective, sensitive, fast, environmentally friendly, and miniaturized luminescence assay.
机译:分散在有机溶剂液滴中的核壳CdSe / ZnS量子点(QD)首次用作选择性检测挥发性物质的发光探针。在使用顶空单滴微萃取(HS-SDME)方法和微体积荧光光谱法将其捕获到液滴上之后,检查了由挥发性物质引起的发光猝灭。该新方法的特点是试剂和样品消耗低,特别是对于QD而言,与使用1 cm石英池的常规发光光谱仪在水相中进行发光探测相比,每次分析可减少约500倍。为了评估QDs作为HS-SDME的发光探针,尝试了14种挥发性物质。用NaBH_(4)氢化后,观察到诸如CH_(3)Hg〜(+)和Se(IV)等物种的强发光猝灭(即I_(0)/ I> 2.5)。在将Hg(II)转化为Hg(0),H_(2)S和甲基环戊二烯基-三羰基锰(MMT)之后,对于诸如Hg(II)的物种观察到中等的发光猝灭(I_(0)/ I大约= 2)。其他形成氢化物的物种(例如As(III),Sb(III),Te(IV)和Bi(III))也引起小的发光猝灭效应(即1

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