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1.
本文设计并合成了一种新型香豆素类Pd~(2+)荧光探针(化合物1)。它由香豆素和羧甲基羟胺基团组成,能实现纯水中Pd~(2+)的高选择性和高灵敏性检测,检测限低至4.0×10~(-8)mol/L,此外,该探针能在pH为4~9的范围内有效检测Pd~(2+)。  相似文献   

2.
用罗丹明B与水合肼一步反应简便制得罗丹明衍生物RBH,试验发现:在乙腈-水(CH3CN:H2O=4:1)溶液中,RBH对Pd2+具有高选择性和广泛的pH探测范围,其对常见金属离子不敏感,且常见钠、钾盐阴离子对Pd2+探测也无干扰作用。探针RBH与Pd2+结合后,RBH的吸收和荧光强度显著增加,其荧光强度增加24倍,检测时间仅需25 min。该Pd2+探针响应灵敏,最低检出限为1.76×10-6mol/L。RBH对Pd2+的识别过程为不可逆,且该探针可制成试纸检测mmol/L级别含Pd2+水样。  相似文献   

3.
王海娜  张慧  俞天智  赵玉玲 《化学通报》2020,83(3):240-245,252
设计合成了2种以香豆素为荧光团、酰腙为识别基团的双香豆素双酰腙类荧光探针,并对其进行了结构表征及光谱性能研究。结果表明,探针对Cu^2+具有高选择性和高灵敏度,表现出明显的荧光猝灭效应,探针与Cu^2+以1∶2的结合比相互作用,对Cu^2+检测限为10^-9mol/L。  相似文献   

4.
以4-N,N-二乙氨基水杨醛为原料,经7-N,N-二乙氨基香豆素-3-甲酸合成了一种新型酰胺类Cu2+荧光探针1。该法具有原料经济易得、合成简单易行的特点。该探针对Cu2+的检测具有良好的离子选择性、抗干扰性能和较高的检测灵敏度,当探针1的浓度为10-5mol/L时,Cu2+的检测限达到2.4×10-7mol/L。该探针与Cu2+以1∶2的摩尔比络合。  相似文献   

5.
以7-羟基-4-三氟甲基香豆素和哌嗪为原料,首次合成了具有双荧光侧臂的新型香豆素类荧光探针化合物,研究发现其中间隔基较少的化合物对Cu2+具有较高的选择性,并且对Cu2+的识别不受其它金属离子的干扰.Cu2+在2.0×10-6~1.0×10-4mol/L范围内,探针的荧光强度与其浓度有较好的线性关系.  相似文献   

6.
闫力强  彭明生 《化学通报》2014,77(5):480-480
以4-(二乙氨基)水杨醛为原料,经7-二氨基-3-羧酸香豆素合成了一种新型酰胺类Cu2+荧光探针1。本实验具有合成原料经济易得,合成方法简单易行的特点。并且该探针对Cu2+的检测具有良好的离子选择性,抗干扰性能和较高的检测灵敏度,探针1的浓度为10-5 mol/L时检测限达到2.4×10-7mol/L。同时该探针可以与Cu2+离子1:2的摩尔比络合。  相似文献   

7.
改进的罗丹明类钯离子荧光分子探针   总被引:1,自引:1,他引:0  
樊江莉  芦静  李宏林  刘晓健  朱浩  彭孝军 《应用化学》2011,28(11):1292-1297
用罗丹明B与水合肼反应生成的中间体与溴丙炔反应合成了荧光增强型Pd2+检测用探针RPd5。 与Pd2+结合后,RPd5的吸收及荧光强度明显增强,其荧光强度增强约40倍,并使检测时间缩短至约16 min。 探针RPd5对Pd2+的响应灵敏,最低检出限为2.31×10-6 mol/L,可以在较宽pH值范围内特别是近中性pH值环境下有效检测Pd2+。 RPd5可以实现对Pd2+以比色及荧光2种途径的可视化识别,并可应用于土壤、池塘水等实际样品中痕量Pd2+的检测。 RPd5还可制成试纸用于纯净水中Pd2+检测。  相似文献   

8.
设计合成了四种含有酰胺和酯基结构的香豆素荧光分子探针,其结构通过1H NMR、13C NMR和HRMS进行了表征,并对探针进行了常见金属离子识别性能的研究。发现该类探针对Fe3+产生荧光淬灭性响应,其中7-位带有二乙氨基的2-(7-二乙氨基香豆素-3-甲酰胺基)乙酸乙酯(C3)和3-(7-二乙氨基香豆素-3-甲酰胺基)乙酸丙酯(C4)对Fe3+的淬灭比例达到99.5%和99.6%,可作为识别Fe3+的探针。  相似文献   

9.
以2,4-二羟基水杨醛为原料经Knoevenagel缩合反应、脱乙酰化反应,再与4-二乙氨基水杨醛经缩合反应,进而通过甲基化合成了新型的香豆素荧光探针.利用核磁共振氢谱(1 H NMR)、碳谱(13 C NMR)和高分辩质谱对所合成的目标化合物进行了结构确认,并测定了其荧光光谱.结果表明,目标化合物对Cu2+有较好的选择性和灵敏度,且当Cu2+浓度在0.66~10μmol·L-1范围内时探针的荧光强度与其浓度有较好的线性关系.Job分析法表明探针与金属离子作用形成1∶1结合的络合物.  相似文献   

10.
王姣亮  龙立平  谢丹 《应用化学》2016,33(7):841-847
以香豆素343和2-苯并噻唑乙腈为原料,合成了香豆素343-亚硫酸根离子探针(Coumarin 343-SO2),并用1H NMR、13C NMR、MS和HRMS等技术手段对合成的化合物进行了表征。 该探针与亚硫酸根离子(SO32-)发生亲核加成反应后,阻断了苯并噻唑与香豆素的共轭结构,从而引起荧光强度的变化,达到检测亚硫酸根离子的目的。 此探针对SO32-具有响应快、高灵敏度、高选择性及检测限低至0.08 μmol/L的特点,其它常见的阴离子及还原性物质对SO32-的检测均无干扰。 此外,该探针具有良好的细胞膜通透性,可用于活细胞中对SO32-进行荧光成像。  相似文献   

11.
将烯丙基结构引入到罗丹明螺环中, 合成了荧光增强型钯离子探针RPd4. RPd4表现出对Pd2+的专一选择性和对其它阳离子良好的抗干扰能力. 探针荧光强度随着Pd2+的加入逐渐增强, 并且在微摩尔级呈现良好的线性关系, 通过拟合计算得到对Pd2+的检出限为0.51 μmol/L. RPd4具有较低的pKa值(3.81±0.02), 说明该探针可以在近中性pH范围内对Pd2+进行选择性识别. 该探针还可以提供比色及荧光两种方式对Pd2+进行可视化检测.  相似文献   

12.
合成了一种主链含联二萘基团的聚吡啶类共轭聚合物, 并通过圆二色谱(CD) 和紫外可见光谱(UV-Vis) 研究了其对Cu2+和Pd2+的识别能力, 并初步推测了识别机理.  相似文献   

13.
金属离子的高效检测对于人类健康和环境保护极其重要。本文通过对甲基苯磺酸催化下3-脱氢莽草酸甲酯与若丹明6G乙二胺缩合的芳构化反应合成了一种检测Fe~(3+)的荧光探针分子Rh M606。该探针分子在乙醇溶液中特异性地与Fe~(3+)络合,导致若丹明内酰胺开环,在553nm处出现强的荧光发射峰。该荧光探针对Fe~(3+)具有良好的选择性,可定量检测水中的Fe~(3+),检测限为3. 93μmol/L。  相似文献   

14.
As an important biomarker in urine, the level of uric acid is of importance for human health. In this work, a Cu(II) functionalized metal–organic framework (Cu2+@Tb-MOFs) is designed and developed as a novel fluorescence probe for wide-range uric acid detection in human urine. The study shows that this fluorescence platform demonstrated excellent pH-independent stability, high water tolerance, and good thermal stability. Based on the strong interaction between metal ions and uric acid, the designed Cu2+@Tb-MOFs can be employed as efficient turn-on fluorescent probes for the detection of uric acid with wide detection range (0~104 µM) and high sensitivity (LOD = 0.65 µM). This probe also demonstrates an anti-interference property, as other species coexisted, and the possibility for recycling. The sensing mechanisms are further discussed at length. More importantly, we experimentally constructed a molecular logic gate operation based on this fluorescence probe for intelligent detection of uric acid. These results suggest the Cu(II) functionalized metal–organic framework can act as a prominent candidate for personalized monitoring of the concentration of uric acid in the human urine system.  相似文献   

15.
基于罗丹明B酰肼和三苯胺染料合成了pH和Cu^2+双识别分子探针(RTPA),并利用核磁氢谱、核磁碳谱和高分辨质谱表征了RTPA的分子结构。通过紫外-可见光谱法和荧光光谱法研究了该荧光分子探针在极性不同的有机溶剂中的光谱性能以及在THF/H2O(V:V=1:1)溶液中对Cu^2+和质子的选择性识别性能。结果表明:随着溶剂的极性增大,化合物RTPA的最大发射波长发生红移,从419 nm红移到500 nm。该探针在水溶液中可以实现高选择性识别Cu^2+离子,不受其他常见金属离子的竞争性干扰。通过Job’s plot曲线证明了探针RTPA识别Cu^2+的化学计量比是1:1,Cu^2+的检出限为0.635μmol/L。当pH在1.87~4.48区间内,探针的荧光强度与pH呈良好的线性关系,线性相关系数为0.9957,其pKa为3.13。探针RTPA也可用于极酸性条件下(pH<4)质子浓度的定量检测。  相似文献   

16.
A new rhodamine B derivative T1 has been rationally synthesized and displayed selective Pd(Ⅱ)-amplified absorbance and fluorescence emission above 540 nm in methanol–water. Upon the addition of Pd(Ⅱ), the spirolactam ring was unfolded and a 1:1 metal-ligand complex formed, which can be used for ‘‘naked-eyes" detection. In addition, fluorescence imaging experiments of Pd~(2+) in HepG2 living cells showed its valuable application in biological systems.  相似文献   

17.
The presence of an abnormal amount of Cu2+ in the human body causes various health issues. In the current study, we synthesized a new naphthoquinolinedione-based probe (probe 1) to monitor Cu2+ in different water systems, such as tap water, lakes, and drain water. Two triazole units were introduced into the probe via a click reaction to increase the binding affinity to a metal ion. In day-light, probe 1 dissolved in a mixed solvent system (HEPES: EtOH = 1:4) showed a vivid color change from light greenish-yellow to pink in the presence of only Cu2+ among various metal ions. In addition, the green luminescence and fluorescence emission of the probe were effectively bleached out immediately after Cu2+ addition. The limit of detection (LOD) of the probe was 0.5 µM when a ratio-metric method was used for metal ion detection. The fluorescence titration data of the probe with Cu2+ showed a calculated LOD of 41.5 pM. Hence, probe 1 possesses the following dual response toward Cu2+ detection: color change and fluorescence quenching. Probe 1 was also useful for detecting Cu2+ spiked in tap/lake water as well as the cytoplasm of live HeLa cells. The current system was investigated using ultraviolet-visible and fluorescence spectroscopy as well as density functional theory calculations (DFT).  相似文献   

18.
We report on a fluorescent probe for the optical (and even bare eye) detection of palladium(II) ion which causes the probe to undergo a strong increase in absorbance and fluorescence. The probe is easily synthesized from rhodamine B hydrazide and 9-anthraldehyde and displays high selectivity over other metal ions. Fluorescence intensity and absorbance are linearly proportional to the concentration of Pd(II) in the 0–7 μM and 0–1 μM concentration range, respectively, with detection limits of 0.21 μM and 0.03 μM. The probe can detect Pd(II) with virtually no interferences by other metal ions and anions. It was applied to intracellular imaging of Pd(II) in living cells and to its determination in a palladium-containing catalyst and in spiked water samples.
Figure
We report on a fluorescent probe for the optical (and even bare eye) detection of palladium(II) ion. The probe is easily synthesized from rhodamine B hydrazide and 9-anthraldehyde and displays high selectivity over other metal ions. It was applied to intracellular imaging of Pd(II) in living cells and to its determination in a palladium-containing catalyst and in spiked water samples.  相似文献   

19.
Cadmium, lead, copper and manganese were determined in human deciduous teeth and bone ash 1400 standard reference material by electrothermal atomic absorption spectrometry (ETAAS), using a lanthanum + palladium + citric acid (CA) modifier mixture. Optimum masses and mass ratios of La, La + Pd and La + Pd + CA modifiers for analytes in bone ash 1400 sample solution were investigated. Pyrolysis and atomization temperatures of analytes in a tooth sample solution were obtained with and without modifiers. The mixture of La + Pd + CA was found to be preferable for the determination of analytes in tooth samples and bone ash 1400, dissolved in a mixture of HNO3 + H2O2. The detection limits and characteristic masses of analytes were obtained with or without modifiers based on integrated absorbance for tooth sample solution (2% m/v). The detection limits obtained with La + Pd + CA are 6,24,16 and 46 ng g?1 for Cd, Cu, Mn and Pb, respectively. Recovery tests for analytes in bone ash 1400 and a tooth solution with La and La + Pd + CA modifier mixture were studied and compared with certified and non certified values. The La + Pd + CA mixture was also applied to the determination of Cd, Pb, Cu and Mn in tooth samples.  相似文献   

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