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1.
Highly selective detection of Hg2+ ion has been achieved using the push–pull-type purine nucleoside-based fluorescent sensor L1. The sensor L1 incorporating aza-18-crown-6 at C6 position of purine nucleoside, is highly sensitive and selective toward Hg2+ ion in CH3CN–H2O mixture (92/8, v/v). The detection limit for the fluorescent sensor L1 toward Hg2+ ion is 7.8 × 10−8.  相似文献   

2.
Honglei Mu 《Tetrahedron letters》2007,48(31):5525-5529
A novel two-channel metal ion sensor has been synthesized from macrocyclic dioxotetraamine and 1,8-naphthalimide derivative. The metal ion-selective signaling behaviors of the sensor were investigated. The sensor presented the selective coloration for Cu2+ and Hg2+ that can be detected by the naked-eye, respectively. Besides, the addition of Cu2+ and Hg2+ quenched the fluorescence of 1 obviously and the detection limit was found to be 3 × 10−7 M for Cu2+ and 7 × 10−7 M for Hg2+. This sensor can be utilized for the visual and spectroscopic detection of Cu2+ or Hg2+ in the presence of the other competing metal ions.  相似文献   

3.
A new indole-based fluorescent chemosensor 1 was prepared and its metal ion sensing properties were investigated. It exhibits high sensitivity and selectivity toward Hg2+ among a series of metal ions in H2O-EtOH (7:1, v/v). The association constant of the 1:1 complex formation for 1-Hg2+ was calculated to be 9.57 × 103 M−1, and the detection limit for Hg2+ was found to be 2.25 × 10−5 M. Computational results revealed that 1 and Hg2+ ion formed with a central tetrahedron-coordinated Hg2+.  相似文献   

4.
An optical sensor for mercury ion (Hg2+), based on quenching the fluorescence of the sensing reagent porphyrin immobilized in plasticized poly(vinyl chloride) (PVC) membrane, has been developed. The responses to mercury ion were compared for the sensors modified with three porphyrin compounds including 5,10,15,20-tetraphenylporphyrin (TPP), tetra(p-dimethylaminophenyl)porphyrin (TDMAPP) and tetra(N-phenylpyrazole) porphyrin (TPPP). Among them, TDMAPP showed the most remarkable response to Hg2+. The drastic decrease of the TDMAPP fluorescence intensity was attributed to the formation of a complex between TDMAPP and Hg2+, which has been utilized as the fabrication basis of a Hg2+-sensitive fluorescence sensor. The analytical performance characteristics of the TDMAPP modified sensor was investigated. The response mechanism, especially involving the response difference of three porphyrin compounds, was discussed in detail. The sensor can be applied to the quantification of Hg2+ with a linear range covering from 4.0 × 10−8 mol L−1 to 4.0 × 10−6 mol L−1. The limit of detection was 8.0 × 10−9 mol L−1. The sensor exhibited excellent reproducibility, reversibility and selectivity. Also, the TDMAPP-based sensor was successfully used for the determination of Hg2+ in environmental water samples.  相似文献   

5.
Mahajan RK  Kaur I  Lobana TS 《Talanta》2003,59(1):101-105
A new ion-selective PVC membrane electrode based on salicylaldehyde thiosemicarbazone as an ionophore is developed successfully as sensor for mercury(II) ions. The electrode shows excellent potentiometric response characteristics and displays a linear log[Hg2+] versus EMF response over a wide concentration range of 1.778×10−6-1.0×10−1 M with Nernstian slope of 29 mV per decade with the detection limit of 1.0×10−6 M. The response time of the electrode is less than 30 s and the membrane electrode operates well in the pH range of 1.0-3.0. The lifetime of the sensor is about 2 months. The electrode shows better selectivity towards Hg2+ ions in comparison with the alkali, alkaline and some heavy metal ions; most of these metal ions do not show significant interference (KPotHg,M values of the order of 10−3-10−4). The present sensor showed comparable or even better performance vis-à-vis similar PVC based ion-selective electrodes reported in literature. The sensor was also applied as an indicator electrode for potentiometric titration of Hg2+ions with I and Cr2O72−.  相似文献   

6.
Lu J  He X  Zeng X  Wan Q  Zhang Z 《Talanta》2003,59(3):553-560
A novel calix[4]arene derivative containing benzothiazole group was coated on glassy carbon electrode (GCE) and then applied to the recognition of mercury ion. Cyclic and square wave voltammetric results showed that the modified electrode selectively recognizes Hg2+ ion in aqueous media. A new anodic stripping peak at −0.3 V (vs. Ag/Ag+) can be obtained by scanning the potential from −0.6 to 0.6 V, and the peak currents are proportional to the Hg2+ concentration. The modified electrode in a 0.1 M H2SO4+0.01 M NaCl solution shows linear voltammetric response in the range of 25-300 μg l−1 and detection limit of 5 μg l−1 (ca. 2.5×10−8 M). This modified GCE does not present any significant interference from alkali, alkaline and transition metal ions except for Pb2+, Ag+ and Cu2+ ions. Only 500, 50 and 100-fold molar excess of Pb2+, Ag+ and Cu2+ ions, respectively, can lead to voltammetric response comparable with that of Hg2+. The proposed method was successfully applied to determine mercury in natural water.  相似文献   

7.
In this study, a multiplex fluorescence sensor for successive detection of Fe3+, Cu2+ and Hg2+ ions based on “on–off” of fluorescence of a single type of gold nanoclusters (Au NCs) is described. Any of the Fe3+, Cu2+ and Hg2+ ions can cause quenching fluorescence of Au NCs, which established a sensitive sensor for detection of these ions respectively. With the introduction of ethylene diamine tetraacetic acid (EDTA) to the system of Au NCs and metal ions, a restoration of fluorescence may be found with the exception of Hg2+. A highly selective detection of Hg2+ ion is, thus, achieved by masking Fe3+ and Cu2+. On the other hand, the masking of Fe3+ and Cu2+ leads to the enhancement of fluorescence of Au NCs, which in turn provides an approach for successive determination of Fe3+ and Cu2+ based on “on–off” of fluorescence of Au NCs. Moreover, this assay was applied to the successful detection of Fe3+, Cu2+ and Hg2+ in fish, a good linear relationship was found between these metal ions and the degree of quenched fluorescent intensity. The dynamic ranges of Hg2+, Fe3+ and Cu2+ were 1.96 × 10−10–1.01 × 10−9, 1.28 × 10−7–1.27 × 10−6 and 1.2 × 10−7–1.2 × 10−6 M with high sensitivity (the limit of detection of Fe3+ 2.0 × 10−8 M, Cu2+ 1.9 × 10−8 M and Hg2+ 2 × 10−10 M). These results indicate that the assay is suitable for sensitive detection of these metal ions even under the coexistence, which can not only determine all three kinds of metal ions successively but also of detecting any or several kinds of metal ions.  相似文献   

8.
A new colorimetric and fluorogenic probe (RN3) based on rhodamine-B has been successfully designed and synthesized. It displays a selective response to Hg2+ in the aqueous buffer solution over the other competing metals. Upon addition of Hg2+, the solution of RN3 exhibits a ‘naked eye’ observable color change from colorless to red and an intensive fluorescence with about 105-fold enhancement. The changes in the color and fluorescence are ascribed to the ring-opening of spirolactam in rhodamine fluorophore, which is induced by a binding of the constructed receptor to Hg2+ with the association and dissociation constants of 0.22 × 105 M−1 and 25.2 μM, respectively. The Job's plot experiment determines a 1:1 binding stoichiometry between RN3 and Hg2+. The resultant “turn-on” fluorescence in buffer solution, allows the application of a method to determine Hg2+ levels in the range of 4.0–15.0 μM, with the limit of detection (LOD) calculated at 60.7 nM (3σ/slope). In addition, the fluorescence ‘turn-off’ and color ‘fading-out’ happen to the mixture of RN3-Hg2+ by further addition of I or S2−. The reversible switching cycles of fluorescence intensity upon alternate additions of Hg2+ and S2− demonstrate that RN3 can perform as an INHIBIT logic gate. Furthermore, the potential of RN3 as a fluorescent probe has been demonstrated for cellular imaging.  相似文献   

9.
A simple fluorescent probe, which contains rhodamine and aminoquinoline moieties, was designed and prepared for selective detection of Hg2+ in acetonitrile. RbQ exhibited high selectivity and sensitivity toward Hg2+ over other common metal ions. The recognition of RbQ toward Hg2+ can be detected by fluorescence spectra, absorption spectra, and even by naked eyes. The binding ratio of the RbQ–Hg2+ complex was found to be 1:1 according to Job plot experiment, and the limit of detection was 1.05×10−7 M. Moreover, the prepared complex RbQ–Zn2+ (RbQZ) could detect Hg2+ in a ratiometric way and showed lower limit of detection (2.95×10−8 M) than RbQ in the same condition. Finally, we also demonstrated that the aminoquinoline–zinc complex could be served as a new and effective FRET donor for rhodamine derivatives.  相似文献   

10.
Heavy metal ion pollution poses severe risks in human health and environmental pollutant, because of the likelihood of bioaccumulation and toxicity. Driven by the requirement to monitor trace-level mercury ion (Hg2+), herein we construct a new DNA-based sensor for sensitive electrochemical monitoring of Hg2+ by coupling target-induced formation of gold amalgamation on DNA-based sensing platform with gold amalgamation-catalyzed cycling signal amplification strategy. The sensor was simply prepared by covalent conjugation of aminated poly-T(25) oligonucleotide onto the glassy carbon electrode by typical carbodiimide coupling. Upon introduction of target analyte, Hg2+ ion was intercalated into the DNA polyion complex membrane based on T–Hg2+–T coordination chemistry. The chelated Hg2+ ion could induce the formation of gold amalgamation, which could catalyze the p-nitrophenol with the aid of NaBH4 and Ru(NH3)63+ for cycling signal amplification. Experimental results indicated that the electronic signal of our system increased with the increasing Hg2+ level in the sample, and has a detection limit of 0.02 nM with a dynamic range of up to 1000 nM Hg2+. The strategy afforded exquisite selectivity for Hg2+ against other environmentally related metal ions. In addition, the methodology was evaluated for the analysis of Hg2+ in spiked tap-water samples, and the recovery was 87.9–113.8%.  相似文献   

11.
The potentiometric response characteristics of mercury ion-selective membrane electrodes based on 2-amino-6-purinethiol (I1) and 5-amino-1, 3, 4-thiadiazole-2-thiol (I2) were described. Ion selectivities were tested for various plasticizers, which were used as solvent mediators to incorporate the ionophores into the membrane. Effects of experimental parameters such as membrane composition, nature and amount of plasticizers and additives, pH and concentration of internal solution on the potential response of Hg2+ electrodes were investigated. The best performance was obtained with the electrode having a membrane composition (w/w) of (I1) (3.17%): PVC (31.7%): DOP (dioctylpthalate) (63.4%): NaTPB (sodium tetraphenylborate) (1.58%). The proposed electrode reveals a Nernstian response over Hg2+ ion in the concentration range of 7.0 × 10−8-1.0 × 10−1 M with limit of detection 4.4 × 10−8 M. The electrode shows good discrimination toward Hg2+ ion with respect to most common cations. It shows a short response time (10 s) for whole concentration range and can be used for 2 months without any considerable divergence in potentials. For evaluation of the analytical applicability, the electrode was used in the determination of Hg2+ ion in different environmental and biological samples. The practical utility of the membrane electrode has also been observed in the presence of surfactants.  相似文献   

12.
Diametrically disubstituted bis(anthrylmethyl) derivative of 1,8-dimethylcyclam exhibited pronounced Hg2+- and Cd2+-selective fluorogenic behaviors in aqueous acetonitrile solution. A distinctive OFF-ON type signaling was observed for Hg2+ and Cd2+ ions in aqueous acetonitrile (CH3CN-H2O = 90:10, v/v) solution, while a selective ON-OFF type switching behavior toward Hg2+ ions was observed in solution having higher water content (CH3CN-H2O = 50:50, v/v). The detection limit for the analysis of Hg2+ ions in 50% aqueous acetonitrile was found to be 3.8 × 10−6 M. The selective OR logic gate behavior of the prepared compound toward two toxic heavy metal ions of Hg2+ and Cd2+ ions in CH3CN-H2O (90:10, v/v) suggests the possibility as a new chemosensing device for the two important target metal ions.  相似文献   

13.
A rhodamine spirolactam derivative (1) bearing a hydrophilic carboxylic acid group is developed as a fluorescent chemodosimeter for bivalent mercury ions (Hg2+) in 100% aqueous solution. It exhibits a highly sensitive “turn-on” fluorescent response toward Hg2+ with a 42-fold fluorescence intensity enhancement under 1 equiv. of Hg2+ added. The chemodosimeter can be applied to the quantification of Hg2+ with a linear range covering from 3.0 × 10−7 to 1.0 × 10−5 M and a detection limit of 9.7 × 10−8 M. Most importantly, the fluorescence changes of the chemodosimeter are remarkably specific for Hg2+ in the presence of other metal ions, which meet the selective requirements for practical application. Moreover, the experiment results show that the response behavior of 1 towards Hg2+ is pH independent in neutral condition (pH 5.0–8.0) and the response is fast (response time less than 3 min). Furthermore, the ring-opening mechanism of the rhodamine spirolactam induced by Hg2+ was supported by NMR, MS, and DFT theoretical calculations. In addition, the proposed chemodosimeter has been used to detect Hg2+ in water samples and image Hg2+ in living cells with satisfying results.  相似文献   

14.
Highly selective label free colorimetric sensor based on AgNPs stabilized by phenolic chelating ligand, N,N′-bis(2-hydroxybenzyl)-1,2-diaminobenzene (1), for NO2 anions has been developed. Addition of NO2 showed selective decolourisation of brownish yellow colour of 1-AgNPs with the detection limit of 10−7 M. Absorption studies showed the complete disappearance of 1-AgNPs peak at 426 nm due to the conversion of AgNPs to silver ions. The presence silver ions were confirmed by white precipitates of AgCl formation with NaCl. The interference studies confirmed the high selectivity of NO2 sensing in presence of anions as well as cations by 1-AgNPs. A linear relationship was observed between the change of absorption and concentration of NO2. The present approach could be performed at room temperature and ambient conditions. The practical applications of 1-AgNPs for selective sensing of NO2 in different water samples such as ground, river, pond and tap water have also been demonstrated.  相似文献   

15.

A fluorescent and colorimetric sensor based on rhodamine 6 g (RD6g) was designed, synthesized, and characterized using microwave irradiation. The sensing behavior of this compound was studied by UV–visible and fluorescence spectroscopy. Sensor RD6g exhibits a high selectivity and an excellent sensitivity and is a dual-responsive colorimetric and fluorescent Hg2+-specific sensor in aqueous buffer solution. Mercury ions give rise to the development of a very fluorescent ring-open amide spirolactam system. The detection limit for Hg2+ was found to be 1.2?×?10?8 M. The binding ratio of RD6g-Hg2+ complex was determined to be 1:1 according to the Job’s plot. The reversibility of RD6g?Hg2+ complex has been achieved with CN? anions. The test strip based on RD6g was developed, which could be used as a suitable and methodical Hg2+ test kit.

  相似文献   

16.
Here for the first time, we present a novel electrochemiluminescence (ECL) sensor based on graphitic carbon nitride/graphene oxide (g-C3N4/GO) hybrid for the ultrasensitive detection of Cu2+, which is a common pollutant in environmental system. The g-C3N4/GO shows stable ECL signal in the presence of the self-produced coreactant from oxygen reduction, and the ECL signal could be effectively quenched by Cu2+, the possible ECL detection mechanism has been proposed in detail. GO can not only significantly enhance the cathodic ECL signal of g-C3N4 (∼3.8 times), but also serve as immobilization platform for g-C3N4. After optimization of experimental conditions, the proposed protocol can offer an ultrasensitive, highly selective and recyclable method for the detection of Cu2+ with a low detection limit of 1.0 × 10−11 M and a wide linear range from 1.0 × 10−11 to 1.0 × 10−7 M. Moreover, the practicability of the ECL sensor in real wastewater samples is also tested, showing that the proposed ECL sensor could be a promising alternative method for the emergency and routine monitoring of Cu2+ in real sample.  相似文献   

17.
A new potentiometric sensor for the determination of iodide based on poly(3-aminophenylboronic acid) (PAPBA) film electrode was constructed. Poly(3-Aminophenylboronic acid) films were synthesized electrochemically on platinum electrode by cyclic voltammetry. The effect of film thickness, pH, and preconditioning parameters on the electrode performance were examined. The analytical performance was evaluated and linear calibration graphs were obtained in the concentration range of 10−6 to 10−1 M iodide ion. The limit of detection was found to be 8 × 10−7 M. The response time of the sensor was 5 s and its lifetime is about one week. To check the selectivity of the PAPBA film for iodide ion, potential interferences such as Cl, Br, F, CN, IO3, Ca2+, and Mg2+ were tested. The PAPBA electrode was also employed as a sensing platform for the determination of iodide ions in commercial table salt.  相似文献   

18.
A novel Hg2+-selective colorimetric sensor based on a cyclen–nitrobenzoxadiazole (NBD) conjugate was investigated. A cyclen derivative with three ester ligands was used as the binding site and the NBD moiety acted as the reporting chromogenic subunit. Interaction of 1 with Hg2+ ions resulted in a pronounced color change from pink to yellow, and fluorescence signaling was also possible. Selective colorimetric signaling of Hg2+ ions by NBD-functionalized cyclen with a detection limit of 1.5 × 10−6 M in aqueous environments was successfully achieved.  相似文献   

19.
Zhen Fang 《Tetrahedron letters》2008,49(14):2311-2315
A cationic 5,15-(p-(9,9-bis(6-trimethylammoniumhexyl)fluorenylethynyl)phenyl)porphyrin tetrabromide was synthesized and the self-assembled films were used for Hg2+ detection in aqueous media. The detection response is based on fluorescence quenching of the porphyrin molecule upon coordination with Hg2+. The detection shows high selectivity for Hg2+ over Cu2+, Zn2+, Pb2+, Cd2+, Mn2+, Ni2+, Co2+ and Ca2+. A linear response toward Hg2+ in a concentration range of 1 × 10−10-1 × 10−6 M was observed for the film with a detection limit of 0.1 nM. The cationic porphyrin film shows higher stability and significant improvement in detection sensitivity, as compared to other porphyrin-based sensors. The amphiphilic cationic nature of the porphyrin synthesized also allows for the direct deposition of a porphyrin layer on a bare glass surface through self-assembly.  相似文献   

20.
A simple and green analytical procedure based on chlorophyll a is presented for the determination of Hg2+ ion. Chlorophyll a was extracted and purified from the leaves of pea and is employed as a reagent for analysis of Hg2+ ion. It displays remarkable fluorescence emission at 674 nm when excited at 412 nm. The emission intensity decreased significantly on exposure to various concentrations of Hg2+ ion. This forms the basis for the determination of Hg2+ ion. The proposed method was evaluated for sensitivity and selectivity. The linear concentration range was found to be 2.0–10 μM with r2 = 0.997 and the limit of detection for Hg2+ ion was 1.3 μM. Ions including Pb2+, Cd2+, Ag+, Zn2+, Co2+, Ni2+, Cu2+, Mg2+, Mn2+, Ru3+, Er3+, K+, Na+, NH4+, Cl, NO3, CH3COO and SO42− did not interfere with the measurement of Hg2+ ion even at 500-fold excess. Since chlorophyll a is widely available in the leaves of most plants, and the extraction and purification process is simple, this technique can provide an alternative, sensitive and economical way to determine Hg2+ ion.  相似文献   

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