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1.
Hongtao Fan  Weijia Li  Shuang Jin 《Talanta》2009,79(5):1228-35
An aqueous solution containing sodium polyacrylate (PA, 0.0030 M) was used in diffusive gradients in thin-films technique (DGT) to measure DGT-labile Cu2+ and Cd2+ concentrations. The DGT devices (PA DGT) were validated in four types of solutions, including synthetic river waters containing metal ions with or without complexing EDTA, natural river water (Hun River, Shenyang, China) spiked with Cu2+ and Cd2+, and an industrial wastewater (Shenyang, China). Results showed that only free metal ions were measured by PA DGT, recovery = 98.79% for Cu2+ and recovery = 97.80% for Cd2+ in solutions containing only free metal ions, recovery = 51.02% for Cu2+ and recovery = 51.92% for Cd2+ in solution with metal/EDTA molar ratio of 2:1 and recovery = 0 in solutions with metal/EDTA molar ratio of 1:1 and 1:2. These indicated that the complexes of Cu-EDTA and Cd-EDTA were DGT-inert or not DGT-labile. The DGT performance in spiked river water (recovery = 8.47% for Cu2+ and recovery = 27.48% for Cd2+) and in industrial wastewater (recovery = 14.16% for Cd2+) were also investigated. Conditional stability constants (log K) of PA-Cu and PA-Cd complexes were determined as 6.98 and 5.61, respectively, indicating strong interaction between PA and the metals.  相似文献   

2.
Chemosensor based on Schiff base molecules (1, 2) were synthesized and demonstrated the selective fluoro/colorimetric sensing of multiple metal ions (Mn2+, Zn2+ and Cd2+) in acetonitrile–aqueous solution. Both 1 and 2 showed a highly selective naked-eye detectable colorimetric change for Mn2+ ions at 10−7 M. Fluorescence sensing studies of 1 and 2 exhibited a strong fluorescence enhancement (36 fold) selectively upon addition of Zn2+ (10−7 M, λmax = 488 nm). Fluorescence titration and single crystal X-ray analysis confirmed the formation of 1:1 molecular coordination complex between 1 and Zn2+. Interestingly, a rare phenomenon of strong second turn-on fluorescence (190 fold, λmax = 466 nm) was observed by the addition of Cd2+ (10−7 M) into 1 + Zn2+ or Zn2+ (10−7 M) into 1 + Cd2+. Importantly both 1 and 2 exhibited different fluorescence λmax with clearly distinguishable color for both Zn2+ and Cd2+.  相似文献   

3.
In order to explore the reuse properties of oxidized chelating resin containing sulfur after adsorption, two kinds of novel chelating resins, poly[4-vinylbenzyl-(2-hydroxyethyl)] sulfoxide (PVBSO) and poly[4-vinylbenzyl-(2-hydroxyethyl)] sulfone (PVBSO2), were synthesized using poly[4-vinylbenzyl-(2-hydroxyethyl)] sulfide (PVBS) as material. Their structures were confirmed by FTIR and XPS. The adsorption properties and mechanism for metal ions such as Au3+, Pt4+, Pd2+, Hg2+, Cu2+, Ni2+, Fe3+, Pb2+, Cd2+, and Zn2+ were investigated. Experimental results showed that PVBSO had good adsorption and selective properties for Au3+, Pd2+ and Cu2+ when the coexisting ion was Pt4+, Ni2+, Pb2+ or Cd2+. In the aqueous system containing Cu2+ and Pb2+ or Cu2+ and Cd2+, PVBSO2 only adsorbed Cu2+. The selective coefficients of PVBSO and PVBSO2 were αAu/Pt = 4.8, αAu/Pd = 11.8, αPd/Pt = 10.9, αCu/Ni = 2.5, αCu/Cd = 41.2, αCu/Pb = ∞, αCu/Ni = 3.0, αCu/Cd = ∞, αCu/Pb = ∞, respectively.  相似文献   

4.
A critical comparison of the selected derivative principal component analysis (PCA) methods on the absorbance matrix data concerning the complexation equilibria between o-CAPAZOXS and Cd2+, Pb2+ and Zn2+ or m-CAPAZOXS and Cd2+, Co2+, Ni2+ and Zn2+ or p-CAPAZOXS and Cd2+ and Zn2+ at 25 °C is provided. As the number of complex species in a complex-forming equilibria mixture is an important step in spectral data treatment, the nine selected index functions for the prediction of the number of light-absorbing species that contribute to a set of spectra is critically tested by the PCA. An improved identification with the second SD(AE) or third derivative TD(AE) and derivative ratio function ROD(AE) for the average error criterion AE is preferred. After the number of various complexes formed the stability constants of species ML, ML2 (and ML3, respectively) type log β11, log β12 (and log β13, respectively) for the system of o-CAPAZOXS (ligand L) with the metals (the standard deviation s(log βpq) of the last valid digits is given in brackets) Cd2+ (6.39(5) and 11.51(9)), Pb2+ (4.24(2) and 9.01(2)) and Zn2+ (5.18(7) and 9.06(10)) and for the system of m-CAPAZOXS with Cd2+ (6.59(20) and 11.51(32)), Co2+ (7.19(6) and 12.19(8)), Ni2+ (7.64(7) and 13.39(12)) and Zn2+ (4.83(3) and 9.57(3)) and for the system of p-CAPAZOXS with Cd2+ (6.44(5), 10.99(10) and 14.57(25)) and Zn2+ (6.84(16), 13.05(29) and 18.74(43)) at 25 °C are estimated using SQUAD(84) nonlinear regression of the mole-ratio spectrophotometric data. The computational strategy is presented with goodness-of-fit tests and various regression diagnostics capable of proving the reliability of the chemical model proposed.  相似文献   

5.
The thermodynamics of the interaction of L-glutamic-N,N-diacetic acid (GLDA) with protons was studied potentiometrically at different temperatures, ionic strengths and ionic media. Four protonation constants and corresponding enthalpy changes occurred at infinite dilution together with temperature and ionic strength coefficients. The medium effect was also interpreted in terms of the formation of weak complexes between the ligand and the cations of supporting electrolytes, resulting in a greater tendency of GLDA to chemically interact with Na+ rather than K+ and, in turn, (CH3)4N+. Formation constants of GLDA with Cd2+ were determined in NaCl(aq) at different ionic strength values. Five complex species were found, namely CdL2−, CdHL, CdH2L0(aq), Cd2L0(aq), and Cd(OH)L3−, whose formation constant values at infinite dilution were log β = 12.68, 17.61, 20.76, 17.52, and 1.77, respectively. All the species results were relevant in the pH range of natural waters, although the Cd2L0(aq) was observed only for CCdCGLDA and concentrations of >0.1 mmol dm−3. The sequestering ability of GLDA toward Cd2+, evaluated by means of pL0.5, was maximum at pH~10, whereas the presence of a chloride containing a supporting electrolyte exerted a negative effect. Among new generation biodegradable ligands, GLDA was the most efficient in Cd2+ sequestration.  相似文献   

6.
Sun D  Xie X  Cai Y  Zhang H  Wu K 《Analytica chimica acta》2007,581(1):27-31
In the presence of Nafion, single-walled carbon nanotubes (SWNTs) were easily dispersed into ethanol, resulting in a homogeneous SWNTs/Nafion suspension. After evaporating ethanol, a SWNTs/Nafion film with bifunctionality was constructed onto glassy carbon electrode (GCE) surface. Attributing to the strong cation-exchange ability of Nafion and excellent properties of SWNTs, the SWNTs/Nafion film-coated GCE remarkably enhances the sensitivity of determination of Cd2+. Based on this, an electrochemical method was developed for the determination of trace levels of Cd2+ by anodic stripping voltammetry (ASV). In pH 5.0 NaAc-HAc buffer, Cd2+ was firstly exchanged and adsorbed onto SWNTs/Nafion film surface, and then reduce at −1.10 V. During the positive potential sweep, reduced cadmium was oxidized, and a well-defined stripping peak appeared at −0.84 V, which can be used as analytical signal for Cd2+. The linear range is found to be from 4.0 × 10−8 to 4.0 × 10−6 mol L−1, and the lowest detectable concentration is estimated to be 4.0 × 10−9 mol L−1. Finally, this method was successfully employed to detect Cd2+ in water samples.  相似文献   

7.
Silver and gold electrodes are useful for the quantitative determination of lead and cadmium with subtractive anodic stripping voltammetry (SASV). The use of SASV is essential for achieving good separation between the two peaks, to eliminate the interference of nitrates when cadmium is present and to allow analysis at very low concentrations without the removal of oxygen. The deposition and dissolution of Pb2+ and Cd2+ proceed at underpotential (UPD) on both electrodes. The UPD properties of the deposits are the main factor determining the analytical characteristics of the ASV method and are strongly affected by the type and concentration of the electrolyte. The effects of anions (Cl, Br, SO42−, NO3) and acids (HNO3, HClO4, H2SO4, HCl) are shown. The two electrodes complement each other and, in addition, enable the qualitative identification of Pb2+ and Cd2+, since the peaks appear in opposite order on the two electrodes. Analysis of mixtures of the two analytes is restricted on gold but not on silver. At gold the two peaks overlap: (i) at concentrations of cadmium higher than 250 nM at deposition times greater than 30 s, (ii) in the presence of copper at concentrations higher than 1 μM, and (iii) in the presence of Triton X-100 at concentrations above 10 mg/l. The repeatability at 10 nM analyte is better than 2.5%. The detection limits for Pb2+ and Cd2+ at 120 s deposition time and 3500 rpm rotation rate are: dlPb/Ag=0.04 nM; dlCd/Ag=0.7 nM; dlPb/Au=0.1 nM; dlCd/Au=0.3 nM. The analysis of lead and cadmium in natural waters has been performed.  相似文献   

8.
A carbazole-based bis-dithiane (1) was rationally constructed in a straightforward manner for the selective and ratiometric fluorescent detection of Cd2+ with the concept of aldehyde group protection/deprotection. The probe showed a ratiometric fluorescent response to Cd2+ with a large emission wavelength shift (>50 nm) and displayed high selectivity for Cd2+ over other metal ions due to distinct deprotection conditions. In addition, a Cd2+-promoted dethioacetalization mechanism was proposed.  相似文献   

9.
Novel 5-amino-1,3,4-thiadiazole-2-thiol unit based macrocyclic ionophore 5,11,17-trithia-1,3,7,9,13,15,19,20,21-nonaazatetracyclo[14.2.1.14,7.110,13]henicosa-4(20),10(21),16(19)-triene-6,12,18-trithione (M1), was synthesized and characterized. Preliminary studies on M1 have showed that it has more the affinity toward Cd2+ ion. Thus, the macrocyclic ionophore (M1) was used as electroactive material in the fabrication of PVC-membrane electrodes such as polymeric membrane electrode (PME), coated graphite electrode (CGE) and coated pyrolytic graphite electrode (CPGE) were prepared and its performance characteristic were compared with. The electroanalytical studies performed on PME, CGE and CPGE revealed that CPGE having membrane composition M1:PVC:1-CN:NaTPB in the ratio of 7:37:54:2 exhibits the best potentiometric characteristics in terms of detection limit of 7.58 × 10−9 mol L−1, Nernstian slope of 29.6 mV decade−1 of activity. The sensor was found to be independent of pH in the range 2.5–8.5. The sensor showed a fast response time of 10 s and could be used over a period of 4 months without any significant divergence in its potentiometric characteristics. The sensor has been employed for monitoring of the Cd2+ ion in real samples and also used as an indicator electrode in the potentiometric titration of Cd2+ ion with EDTA.  相似文献   

10.
Meloun M  Capek J  Syrový T 《Talanta》2005,66(3):547-561
A critical comparison of the various PCA methods on the absorbance matrix data concerning the complexation equilibria between SNAZOXS and Cd2+, Co2+, Cu2+, Ni2+, Pb2+ and Zn2+ or Naphtylazoxine 6S and Cd2+, Cu2+, Ni2+ and Zn2+ at 25 °C is performed. The number of complex species in a complex-forming equilibria mixture is the first important step for further qualitative and quantitative analysis in all forms of spectral data treatment. Therefore, the accuracy of the nine selected index functions for the prediction of the number of light-absorbing components that contribute to a set of spectra is critically tested using the principal component PCA algorithm INDICES in S-Plus software. Four precise methods based upon a knowledge of the experimental error of the absorbance data and five approximate methods requiring no such knowledge are discussed. Precise methods always predict the correct number of components even a presence of the minor species in mixture. Due to the large variations in the index values and even at logarithmic scale they do not reach an obvious point where the slope changes. An improved identification with the second or third derivative and derivative ratio function for some indices is preferred. Behind the number of various complexes formed the stability constants of species ML, ML2, (and ML3, respectively) type log β11, log β12, (and log β13, respectively) for the system of SNAZOXS (ligand L) with six metals (the standard deviation s(log βpq) of the last valid digits are in brackets) Cd2+ (4.50(3), 8.36(7)), Co2+ (5.75(6), 9.79(9), 13.05(2)), Cu2+ (6.69(6), 11.40(7)), Ni2+ (6.44(8), 10.91(11), 15.07(10)), Pb2+ (5.63(5), 9.97(9)) and Zn2+ (5.11(3), 8.84(5)) and for system of Naphtylazoxine 6S with Cd2+ (6.08(4), 11.44(7), 16.06(11)), Cu2+ (7.80(8), 13.41(14)), Ni2+ (6.35(12), 11.43(19), 16.68(24)) and Zn2+ (7.01(8), 12.65(15)) at 25 °C are estimated with SQUAD(84) nonlinear regression of the mole-ratio spectrophotometric data. The proposed strategy of an efficient experimentation in a stability constants determination, followed by a computational strategy, is presented with goodness-of-fit tests and various regression diagnostics able to prove the reliability of the chemical model proposed.  相似文献   

11.
The compound N-(4-amino-1-methyl-5-nitroso-6-oxo-1,6-dihydropyrimidin-2-yl)-(s)-glutamic acid (H3L) was synthesised and structurally characterised by analytical methods and 1H, 13C and 15N NMR spectroscopy. This compound (H3L) shows the same topology as other model receptors previously used to develop chemical functionalization at the surface of an active carbon when they adsorb on it. Protonation of H3L and its coordination ability towards Cd2+, Zn2+, Cu2+ and Mn2+ ions in water solution was also studied by potentiometric methods, UV–Vis and 1H, 13C NMR spectroscopies. The obtained results allow us to fit the operative conditions for the use of the activated carbon–H3L adsorbent for the retaining of the above-mentioned metal ions in aqueous solutions. The molecular structure of {[Cd(HL)H2O] · 3H2O}n was solved by single-crystal X-ray diffraction methods.  相似文献   

12.
Three model metal complexes: Ni(NCS)L, Zn2(NCS)2L2 and Cd2(NCS)2L2, consisting of the SCN anion(s) and L = 2-[(2-dimethylaminoethylimino)-methyl]-phenolate, have been studied by X-ray diffraction and solid state NMR spectroscopy. The metal cations in these complexes have different coordination modes: Ni2+ is almost square-planar, the Zn2+ cation in Zn2(NCS)2L2 is pentacoordinated, whereas Cd2+ is penta- and hexacoordinated in [Cd2(NCS)2L2]. The different coordination of the metal cations influences the chemical shifts of the metal cations and also the nitrogen atoms. These chemical shifts can be correlated with the M-N and M-O bond lengths (M = Ni2+, Zn2+, Cd2+).  相似文献   

13.
Alginic acid (AA) is a natural polysaccharide derived from brown algae. Naturally AA is present in cellular wall forming insoluble complexes with ions as calcium, magnesium, and sodium. This polymer is composed of uronic acids as d-manuronic acid and l-guloronic acid (units differing in C5 configuration) which are disposed in blocks or alternating on principal chain due its spatial configuration. In its structure only hydroxy and carboxylic acid are present, with a pKa alginic acid = 3.45. At pH = 4.3 this polymer is completely soluble in water. Metal ion retention was evaluated using liquid-phase polymer-based retention (LPR) technique elution method, and metal ions studied were Ag+, Co2+, Ni2+, Cu2+, Zn2+, Cd2+, and Pb2+ at different pH and filtration factor. A high efficiency for all metal ions at all pH was reveled with a maximum at pH = 4.5 of 100% of majority of metal ions. To evaluate the maximum retention capacity (MRC) of AA, LPR technique concentration method was used. Metal ion/polymer ratio from 48 to 325 mg/g for Zn2+ and Ag+ were studied, respectively. Homopolymer and polymer-metal ion complexes were characterized using FT-IR, Far-IR spectroscopy, dynamic light scattering (DLS), and thermogravimetric analysis. FT-IR revealed relevant shifts between AA and PMC, which involve carboxylic acid, hydroxy, and ether groups. DLS shows non-pH-dependent sizes of alginic acid-silver complexes.  相似文献   

14.
A heterocyclic hydrazone ligand, pyridine-2-carboxaldehyde-2-pyridylhydrazone, HL, 1, was investigated as a new chromogenic agent for selective detection of Pd2+. The ligand HL, 1, undergoes 1:1 complexation with Pd2+ and Cu2+ to form complexes [Pd(L)Cl], 1a and [Cu(HL)Cl2], 1b respectively. The complex 1a gives a characteristic absorption peak at 536 nm with distinct reddish-pink coloration. The change in color can easily be distinguished from other metal complexes by the naked eye. No obvious interference was observed in the presence of other metal ions (Na+, K+, Mg2+, Ca2+, Al3+, Mn2+, Fe3+, Co2+, Ni2+, Cu2+, Zn2+, Cd2+, Sn2+, Hg2+, Pb2+). The association constants, Kass (UV–Vis), were found to be 5.52 ± 0.004 × 104 for 1a and 4.94 ± 0.006 × 104 for 1b at 298 K. On excitation at 295 nm, the ligand HL, 1 strongly emits at 372 nm due to an intraligand 1(π–π) transition. Upon complexation the emission peaks are blue shifted (λex 295 nm, λem 358 nm for 1a and λex 295 nm, λem 367 nm for 1b) along with a quenching (F/F0 0.32 for 1a and 0.88 for 1b) in the emission intensity. DFT and TDDFT calculations were highly consistent with the spectroscopic behavior of the ligand and complexes. The molecular structure of the complex 1b has been determined by single crystal X-ray diffraction studies.  相似文献   

15.
Owing to its high affinity with phosphate, Zr(IV) can induce the aggregation of adenosine 5′-triphosphate (ATP)-stabilized AuNPs, leading to the change of surface plasmon resonance (SPR) absorption spectra and color of ATP-stabilized AuNP solutions. Based on these phenomena, visual and SPR sensors for Zr(IV) have been developed for the first time. The A660 nm/A518 nm values of ATP-stabilized AuNPs in SPR absorption spectra increase linearly with the concentrations of Zr(IV) from 0.5 μM to 100 μM (r = 0.9971) with a detection limit of 95 nM. A visual Zr(IV) detection is achieved with a detection limit of 30 μM. The sensor shows excellent selectivity against other metal ions, such as Cu2+, Fe3+, Cd2+, and Pb2+. The recoveries for the detection of 5 μM, 10 μM, 25 μM and 75 μM Zr(IV) in lake water samples are 96.0%, 97.0%, 95.6% and 102.4%, respectively. The recoveries of the proposed SPR method are comparable with those of ICP-OES method.  相似文献   

16.
In-channel indirect amperometric detection mode for microchip capillary electrophoresis with positive separation electric field is successfully applied to some heavy metal ions. The influences of separation voltage, detection potential, the concentration and pH value of running buffer on the response of the detector have been investigated. An optimized condition of 1200 V separation voltage, −0.1 V detection potential, 20 mM (pH 4.46) running buffer of 2-(N-morpholino)ethanesulfonic acid (MES) + l-histidine (l-His) was selected. The results clearly showed that Pb2+, Cd2+, and Cu2+ were efficiently separated within 80 s in a 3.7 cm long native separation PDMS/PDMS channel and successfully detected at a single carbon fibre electrode. The theoretical plate numbers of Pb2+, Cd2+, and Cu2+ were 1.2 × 105, 2.5 × 105, and 1.9 × 105 m−1, respectively. The detection limits for Pb2+, Cd2+, and Cu2+ were 1.3, 3.3 and 7.4 μM (S/N = 3).  相似文献   

17.
Phenothiazine-pyridyl chalcone, a new internal charge transfer (ICT) probe, has been designed that allows naked eye detection and a reversible, ratiometric ‘on-off’ sensing capability for biologically and environmentally significant Cu2+ in CH3OH-H2O (4:1 v/v) under buffered conditions. The association constants determined using spectrophotometric and the fluorimetric techniques follow the order Cu2+ > Ni2+ > Co2+ > Zn2+ > Cd2+ > Mg2+ ≈ Ba2+ ≈ Ca2+ ≈ K+≈ Na+ ≈ Li+.  相似文献   

18.
The present paper has focused on the potential application of the bifunctional polydopamine@Fe3O4 core–shell nanoparticles for development of a simple, stable and highly selective electrochemical method for metal ions monitoring in real samples. The electrochemical method is based on electrochemical preconcentration/reduction of metal ions onto a polydopamine@Fe3O4 modified magnetic glassy carbon electrode at −1.1 V (versus SCE) in 0.1 M pH 5.0 acetate solution containing Pb2+ and Cd2+ during 160 s, followed by subsequent anodic stripping. The proposed method has been demonstrated highly selective and sensitive detection of Pb2+ and Cd2+, with the calculated detection limits of 1.4 × 10−11 M and 9.2 × 10−11 M. Under the optimized conditions, the square wave anodic stripping voltammetry response of the modified electrode to Pb2+ (or Cd2+) shows a linear concentration range of 5.0–600 nM (or 20–590 nM) with a correlation coefficient of 0.997 (or 0.994). Further, the proposed method has been performed to successfully detect Pb2+ and Cd2+ in aqueous effluent.  相似文献   

19.
A newly designed internal charge transfer chemosensor, DIPZON exhibits Co2+ selective optical responses, which include 112 nm red shift in absorption and a dramatic 37-fold enhancement in the fluorescence output in the buffer CH3OH/H2O (1:1 v/v) system. By contrast, the optical responses were not as sensitive with several other biologically relevant metal ions examined with the binding interactions following the sequence Co2+ > Cu2+ > Zn2+ > Cd2+ >> Ba2+ ≈ Ca2+ ≈ Mg2+ ≈ K+ ≈ Na+ ≈ Li+.  相似文献   

20.
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   

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