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1.
合成了巯基乙酸(TGA)修饰的壳核型CdTe/CdS量子点(TGA-CdTe/CdS QDs), 利用紫外-可见光谱和荧光光谱研究了TGA-CdTe/CdS QDs与盐酸巴马汀(PC)的相互作用机理. 结果表明, 在pH=7.4的Tris-HCl缓冲液中, QDs与PC相互作用后使QDs的荧光呈线性猝灭, 并有良好的线性关系(r=0.997), 线性范围为25~1×104 ng/mL, 检出限(3σ)为7.7 ng/mL. 建立了一种快速简便、 可定量测定PC的新方法.  相似文献   

2.
在水相中合成了硫普罗宁(Tiopronin,TP)修饰的CdTe/CdS量子点(TP-CdTe/CdS QDs).利用紫外-可见吸收光谱、荧光光谱研究了TP-CdTe/CdS QDs与丝裂霉素(mitomycin C,MMC)的相互作用机理.在pH=7.6的tris-HCl缓冲溶液介质中,TP-CdTe/CdS QDs与MMC相互作用,使TP-CdTe/CdS QDs的荧光发生猝灭,并且QDs的荧光强度与MMC的浓度有良好的线性关系(r=0.9991),线性范围4.7×10-9~1.2×10-8g/mL,检出限(3σ)为1.4×10-g/mL.此方法快速简便,用于尿样中丝裂霉素的测定,实验结果令人满意.  相似文献   

3.
采用水相法合成了谷胱甘肽(GSH)修饰的CdTe/CdS量子点(GSH-CdTe/CdS QDs). 透射电子显微镜表征结果表明, GSH-CdTe/CdS QDs的粒径分布均匀, 分散性好. 在Tris-HCl(pH=7.6)缓冲液中, 由于静电引力作用, 带正电的盐酸洛美沙星(LMFH)-Cu(Ⅱ)配合物[LMFH-Cu(Ⅱ)]吸附到带负电的GSH-CdTe/CdS QDs表面形成基态复合物, 导致GSH-CdTe/CdS QDs的荧光猝灭. 随后, 向GSH-CdTe/CdS QDs-LMFH-Cu(Ⅱ)配合物体系中加入鲱鱼精DNA(hsDNA), hsDNA可诱导LMFH-Cu(Ⅱ)配合物从GSH-CdTe/CdS QDs表面脱落而嵌入到hsDNA的双螺旋结构中, 使GSH-CdTe/CdS QDs的荧光恢复. 通过对GSH-CdTe/CdS QDs荧光的可逆调控, 利用荧光光谱、 紫外-可见吸收光谱和共振瑞利散射光谱研究了hsDNA与LMFH-Cu(Ⅱ)配合物的相互作用. 通过对比GSH-CdTe/CdS QDs与LMFH相互作用的光谱性质, 讨论了GSH-CdTe/CdS QDs-LMFH-Cu(Ⅱ)-hsDNA的相互作用机理, 模拟了作用过程, 从而建立了一种研究氟诺喹酮类药物的金属配合物与核酸相互作用机制的光谱方法.  相似文献   

4.
CdTe/CdS量子点荧光探针测定司帕沙星含量   总被引:2,自引:1,他引:1  
侯明  那佳  沈坤 《化学学报》2010,68(14):1437-1442
在水溶液中合成了巯基乙酸修饰的CdTe/CdS量子点(QDs), 基于喹诺酮类抗生素司帕沙星与CdTe/CdS量子点的荧光猝灭作用, 建立了用CdTe/CdS量子点作为荧光探针检测微量司帕沙星的新方法. 用荧光光谱、紫外光谱研究了CdTe/CdS QDs与司帕沙星的相互作用. 研究表明: 该荧光猝灭的机理属于静态猝灭, 反应的作用机理可能是司帕沙星促使QDs表面键合的有机分子发生变化, 在Cd的电子空穴上形成了碲氧复合物, 致使荧光猝灭. 实验发现, pH为6.50的磷酸缓冲溶液中, 量子点的浓度为3.75×10-4 mol/L时, 司帕沙星的浓度在0.1~50 μg/mL范围与CdTe/CdS量子点荧光猝灭强度呈良好的线性关系, 相关系数0.9992, 检出限0.01399 μg/mL. 该方法简便、快捷、灵敏、线性范围宽, 应用于司帕沙星片剂司帕沙星含量的测定, 分析结果与标示量一致; 用于牛奶中司帕沙星残留量的检测, 回收率在93.1%~102.4%, 结果满意.  相似文献   

5.
用荧光光谱和紫外可见光谱研究了萘酚-亚硝酸根与三聚氰胺相互作用的性质,考察了溶液酸度对作用体系的影响.在4.1<pH<8.6时,三聚氰胺使体系荧光光谱增强,体系对三聚氰胺的线性响应范围为2.0~20 mg/L; 在8.6≤pH≤10.1时,三聚氰胺使体系荧光光谱降低,体系对三聚氰胺的线性响应范围为2.0~60 mg/L...  相似文献   

6.
以巯基乙酸为稳定剂,在水溶液中合成了CdTe/CdS量子点(QDs),并基于QDs与锑混合后发生荧光猝灭作用,建立了以CdTe/CdS QDs作为荧光探针检测微量锑的新方法。研究表明,在pH值为4.80的柠檬酸-柠檬酸钠中,反应时间为10min时,锑浓度在0.03~2.50μg/mL范围与CdTe/CdS QDs的荧光猝灭程度呈良好的线性关系,相关系数为0.9969,检出限为2.60×10-3μg/mL。  相似文献   

7.
以3-巯基丙酸作为修饰剂,在水溶液中合成了稳定的CdSe/ZnS量子点(QDs),透射电镜观察所合成量子点的形貌近似球形,粒径约为25 nm.吸收光谱与荧光光谱的研究表明,CdSe QDs在410 nm处有最大吸收峰,而CdSe/ZnS QDs的最大吸收峰在470 nm处,CdSe/ZnS QDs的荧光强度是CdSe QDs的11倍.考察了缓冲溶液的体积、pH值、反应温度、反应时间对体系荧光的影响.在最佳实验条件下,体系的荧光强度与BSA的浓度呈线性关系,线性响应范围为0.746×10-7~4.48×10-7 mol/L,检出限为3.846×10-10 mol/L.并且CdSe/ZnS QDs荧光强度基本保持稳定,可达两个多月.该方法应用于合成样品的测定,结果满意.  相似文献   

8.
合成了新型巯基化壳聚糖,并采用一步法合成了巯基化壳聚糖包覆的水溶性CdS量子点(QDs)。结果表明制备的巯基化壳聚糖包覆CdS QDs粒径均匀,该量子点在水溶液中稳定性好并且Hg2+对其荧光具有明显的猝灭作用。在最佳测定条件下,标准曲线的线性范围为3.0×10-7~5.0×10-5 mol/L,检出限为5.3×10-8 mol/L,且方法抗干扰性好,日内及日间精密度在5.8%之内。该方法应用于实际水样检测,回收率在86.4%~104.6%之间。  相似文献   

9.
以巯基乙酸(TGA)为稳定剂制备CdSe/CdS量子点(CdSe/CdS QDs)。在弱酸性条件下,灭蝇胺(Cyr)可使CdSe/CdS QDs的荧光增强,据此建立了以CdSe/CdS QDs为荧光探针快速检测辣椒、豇豆、苦瓜、黄瓜和圣女果中Cyr残留的新方法,并优化了Cyr的测定条件。结果表明,当激发波长(λ_(ex))为481 nm时,CdSe/CdS QDs的最大发射波长(λ_(em))为580 nm,且不受基质背景荧光干扰。在最优条件下,Cyr在5.0~120 nmol/L范围内与CdSe/CdS QDs的荧光强度增强呈线性关系,相关系数(r)均不低于0.999 1,检出限(LOD,S/N=3)为0.8~1.4 nmol/L,定量下限(LOQ,S/N=10)为2.4~4.6 nmol/L;在4、40、100μg/kg加标水平下的回收率为82.5%~108%,相对标准偏差(RSD,n=3)不大于6.9%。该方法选择性好、灵敏度高、操作简便,应用于实际蔬菜中Cyr的测定,结果满意。  相似文献   

10.
制备了巯基乙酸(TGA)修饰的CdTe/CdS量子点(QDs),并基于pH值为5.80的柠檬酸-柠檬酸钠缓冲溶液和十二烷基苯磺酸钠(SDBS)存在下,Ag(Ⅰ)与CdTe/CdS QDs的荧光猝灭作用,建立了以CdTe/CdS QDs为荧光探针测定样品中痕量Ag(Ⅰ)含量的新方法。室温下,Ag(Ⅰ)的质量浓度在3.0~700μg/L范围内与CdTe/CdS QDs荧光猝灭强度呈线性关系,相关系数为0.9988,方法的检出限为1.0μg/L。方法应用于环境废水中痕量Ag(Ⅰ)含量检测,并做回收试验,测得回收率为95.2%~103.0%。  相似文献   

11.
A novel, sensitive and convenient determine technology based on the quenching of the fluorescence intensity of functionalized CdS quantum dots by sulfadiazine was proposed. Luminescent CdS semiconductor quantum dots (QDs) modified by thioglycollic acid (TGA) were synthesized with the microwave method. The modified CdS QDs are water-soluble, stable and highly luminescent. The possible mechanism for the reaction was also discussed. When sulfadiazine was added into the CdS QDs colloid solution, the surface of CdS QDs generates the electrostatic interaction in aqueous medium, which induces the quenching of fluorescence emission at 489 nm. Under optimum condition, the fluorescence intensity versus sulfadiazine concentration gave a linear response according Stern-Volmer equation with an excellent 0.9981 correlation coefficient. The linearity range of the calibration curve was 1.2 x 10(-5) to 2.13 x 10(-3) mol L(-1). The limit of detection (3delta) is 8.0 micromol L(-1). The relative standard deviation for five determinations of 0.13 x 10(-3)mol L(-1) sulfadiazine is 1.4%. The concentrations of sulfadiazine injections were determined by the proposed method with a satisfactory result.  相似文献   

12.
CdS quantum dots (QDs) modified with l-cysteine has been prepared by one step. They are water-soluble and biocompatible. To improve CdS QDs stability and interaction between silver ion and functionalized CdS QDs in aqueous solution, some amounts of fresh l-cysteine were added to functionalized CdS solution. Based on the characteristic fluorescence enhancement of CdS QDs at 545 nm by silver ions in the presence of some amounts of fresh l-cysteine, simultaneously, a gradual red shift of fluorescence emission bands of CdS QDs from 545 to 558 nm was observed. A simple, rapid, sensitive and specific detection method for silver ion was proposed. Under optimum conditions, the fluorescence intensity of CdS QDs is linearly proportional to silver concentration from 2.0 × 10−8 to 1.0 × 10−6 mol/L with a detection limit of 5.0 × 10−9 mol/L. In comparison with single organic fluorophores, functionalized CdS quantum dots are brighter, more stable against photobleaching, and don’t suffer from blinking. Furthermore, owing to the fluorescence enhancement effect of CdS QDs by silver ion, the proposed method showed lower detection blank and higher sensitivity. Possible fluorescence enhancement mechanism was also studied.  相似文献   

13.
This paper describes the synthesis of CdTe quantum dots (QDs) together capped by glutathione and thioglycolic acid (GSH and TGA) in aqueous solution. The narrow photoluminescence (fwhm ≤ 40 nm) CdTe QDs, whose emission spans most of the visible spectrum from green through red, has a quantum yield (QY) of 68% at room temperature. GSH/TGA-CdTe QDs are characterized by various experimental techniques such as optical absorption, photoluminescence and AFM measurements. Coumaric acid and caffeic acid is able to quench the fluorescence of GSH/TGA-CdTe QDs, and the fluorescence intensity is linearly proportional to the concentration of quenchers. The addition of bovine serum albumin (BSA) restores the fluorescence intensity of GSH/TGA-CdTe QDs-coumaric acid system and GSH/TGA-CdTe QDs-caffeic acid system. The fluorescence recovery was due to the interaction of BSA with coumaric acid and caffeic acid, leading to the freeing of the GSH/TGA-CdTe QDs. The fluorescence quenching mechanism of GSH/TGA-CdTe QDs was discussed. The binding constant and thermodynamics parameters of BSA-coumaric acid and BSA-caffeic acid during the binding process were calculated in the paper.  相似文献   

14.
CdTe/CdS半导体量子点作为农药百草枯的高灵敏传感器   总被引:3,自引:1,他引:2  
用硫普罗宁(Tiopronin, TP)作为稳定剂合成了水溶性的高荧光CdTe/CdS量子点. 研究了该量子点与10种农药的相互作用. 实验发现, 当农药浓度为4.76×10-6 mol/L时, 农药百草枯(Paraquat)能显著猝灭CdTe/CdS量子点的荧光, 使其荧光强度下降87.3%, 而分别加入乙酰甲胺磷及辛硫磷等其它9种农药, 仅能使CdTe/CdS量子点的荧光强度下降0.1%~5.1%, 显示了该CdTe/CdS量子点对百草枯的特异性传感作用. 采用吸收光谱和时间分辨荧光动力学研究了百草枯对CdTe/CdS量子点的荧光猝灭机理. 计算得出荧光强度猝灭的Stern-Volmer常数K为2.03×106, 而寿命猝灭的Stern-Volmer常数K为4.25×105. 结果表明, 百草枯对CdTe/CdS量子点的荧光猝灭主要为静态过程, 而动态过程的贡献较小. 利用二者的猝灭作用建立了对农药百草枯的高灵敏检测新方法, 校正曲线的线性范围为9.90×10-9~1.50×10-6 mol/L, 检出限为6.35×10-9 mol/L, R=0.999. 用该方法对3种食品和3种水样中残留农药进行了检测, 加标回收率均在82.2%~98.5%之间, 其相对标准偏差为2.62%~8.35%.  相似文献   

15.
Lai S  Chang X  Mao J  Zhai Y  Lian N  Zheng H 《Annali di chimica》2007,97(1-2):109-121
CdS quantum dots (QDs) modified with bismuthiol II potassium salt is prepared in one step. Based on the characteristic fluorescence enhancement of CdS QDs at 480 nm by silver ions, simultaneously, a red shift of fluorescence emission bands of CdS QDs from 460 to 480 nm is observed. A simple, rapid, sensitive and specific detection method for silver ion is proposed. Under optimum conditions, the fluorescence intensity of CdS QDs was linearly proportional to silver ion concentration from 0.01 to 5.0 micromol L(-1) with a detection limit of 1.6 nmol L(-1). In comparison with single organic fluorophores, functionalized CdS quantum dots are brighter, more stable against photobleaching and do not suffer from blinking. Furthermore, the proposed method shows higher sensitivity and selectivity. A possible fluorescence enhancement mechanism is also studied.  相似文献   

16.
We have synthesised water soluble CdS/ZnS core-shell quantum dots (QDs) capped with mercaptoacetic acid (MAA). They were characterised by UV–vis absorption spectroscopy, fluorescence spectroscopy, FT-IR and transmission electron microscopy. Such QDs can be used as fluorescent probes for the determination of metal ions because they quench the fluorescence of the QDs. The QDs exhibit absorption and emission bands at 345?nm and 475?nm respectively, which is more longer wavelength compared to MAA-capped CdS QDs and obviously is the result of the larger particle size. The fluorescence intensity of CdS-based QDs is strongly enhanced by coating them with a shell of ZnS. In addition, such functionalised QDs are more sensitive to Hg(II) ions. Parameters such as pH, temperature and concentration of the QDs have been optimised. A high selectivity and sensitivity toward Hg(II) ions is obtained at pH 7.4 and a concentration of 12.0?mg of QDs per L. Under optimum conditions, the fluorescence intensity of CdS/ZnS QDs is linearly proportional to the concentration of Hg(II) in the range from 2.5 to 280?nM, with a detection limit of 2.2?nM. The effect of potentially interfering cations was examined and confirmed the high selectivity of this material.
Figure
Water soluble Mercaptoacetic acid (MAA)-capped CdS/ZnS core-shell quantum dots (QDs) was synthesised and characterised by using the UV-Visible absorption spectroscopy, Fluorescence spectroscopy, Fourier Transform Infrared Spectroscopy (FT-IR) and Transmission Electron Microscopy (TEM). These functionalised QDs are used as fluorescence probe for the determination of Hg(II) ions, based on the fluorescence quenching of QDs. A high optical selectivity and sensitivity toward Hg(II) ions was obtained at pH 7.4 of Tris–HCl buffer with a QDs concentration of 12.0?mgL?1. Under optimum conditions, the fluorescence intensity of CdS/ZnS QDs was linearly proportional to mercury ions concentration in the range 0.025?×?10?7 to 2.8?×?10?7?M with a detection limit of 2.2?×?10?9?M. The effect of common foreign ions on the fluorescence of the QDs was examined which confirmed high selectivity of this material towards Hg(II) ions. Measurements of real samples also give satisfactory results which were in good agreement with those obtained using Atomic Absorption Spectroscopy. Therefore, these QDs are not only sensitive and of low cost, but also can be reliable for practical applications.  相似文献   

17.
合成了弱配体柠檬酸三钠修饰的CdS量子点(Cit-CdS QDs), 透射电子显微镜表征结果表明, Cit-CdS QDs的粒径分布均匀(4~6 nm), 分散性好。 研究了金属离子(银(Ⅰ)离子、镉(Ⅱ)离子)、巯基化合物(巯基乙酸、半胱氨酸)以及金属离子(银(Ⅰ)离子、镉(Ⅱ)离子)与巯基化合物形成的配合物对Cit-CdS QDs荧光的影响。 发现金属离子(银离子、镉离子)与巯基化合物(巯基乙酸、半胱氨酸)形成的水溶性配合物可以显著增强Cit-CdS QDs的荧光, 配合物对Cit-CdS QDs的增强程度比单独的金属离子或巯基化合物均要高, 而且配合物修饰的CdS QDs对铜(Ⅱ)离子的响应要高于单独用金属离子或巯基化合物修饰的量子点。 建立了铜(Ⅱ)离子高灵敏度荧光检测方法, 该方法检测范围宽(1.0×10-8~1.0×10-6 mol/L), 检测限低(1.0×10-9 mol/L)且具有很好的选择性, 拓展了配合物作为量子点修饰剂的应用。  相似文献   

18.
A convenient label-free fluorescence(FL) nanoprobe for rapid detection of cadmium(Cd) was established using glutathione-capped CdS quantum dots(QDs) and 1,10-phenanthroline(phen). The prepared CdS QDs exhibited a strong FL emission at 536 nm, which could be quenched by phen due to the photoinduced hole transfer(PHT) mechanism. The existence of Cd effectively recovered the FL intensity of CdS QDs, which was due to the easy detachment of phen from the surface of QDs to form[Cd(phen)2(H2O)2]2+ in solution. Cd concentrations were linearly correlated with the FL intensity in the range of 0.0625-1.25 μmol/L under the optimized conditions and the detection limit was 0.01 μmol/L. Finally, the Cd concentration was accurately quantified in real water sample using the proposed sensor.  相似文献   

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