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1.
The formation of mixed ligand complexes of the title metal ions with 1,10-phenanthroline (Phen) or 2,2-bipyridyl (Bipy) in presence of histidine (His) has been studied pH-metrically. The stepwise formation of 111 mixed ligand complexes has been inferred from the potentiometric titration curves. Initially, a 11 metal—Phen or—Bipy complex is formed in the lower buffer region and then the addition ofHis takes place resulting in 111 ternary complex formation. The formation constants (K MAL ) of the resulting mixed ligand complexes have been calculated at 30±1°C (=0.1 KNO3) and the values have been found to be higher than the formation constants of 12 and lower than those of 11 metal—His complexes. The order of stability in terms of metal ions follows the order, Ni(II)>Zn(II)>Cd(II).With 2 Figures  相似文献   

2.
Summary Sensitive extraction-spectrophotometric procedures are described for the complexes of Cu(II), Zn(II), Cd(II) and Hg(II) with 5-Br-PADAP using chloroform as solvent. Optimal conditions have been established for the quantitative extraction of the metal chelates and their composition and optical characteristics have been determined as well. The conditional extraction constants amount logK ex=10, the molar absorptivities of the complexes being 105 l·mole–1·cm–1. Job's method and equilibrium shift method indicate the molar ratios M5-Br-PADAP=12.
Spektralphotometrische Bestimmung von Spuren Cu(II), Zn(II), Cd(II) und Hg(II) mit 2-(5-Bromo-2-pyridylazo)-5-diethylaminophenol (5-Br-PADAP)
Zusammenfassung Einfache und empfindliche Methoden zur extraktionsspektralphotometrischen Bestimmung von Spuren Cu(II), Zn(II), Cd(II) und Hg(II) mit 5-Br-PADAP wurden beschrieben. Chloroform wurde als Extraktionsmittel verwendet. Die optimalen Bedingungen für die quantitative Extraktion der Metallchelate wurden ermittelt und deren Zusammensetzung bestimmt. Die Stabilitätskonstanten haben hohe Werte (logK ex=10), die molare Absorption der Komplexe beträgt 1051·mol–1·cm–1. Das Molarverhältnis der Komplexe beträgt M5-Br-PADAP=12.
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3.
A method for the determination of Fe(III), Co(II) and Cr(III) by flame atomic absorption spectrophotometry (FAAS) after preconcentrating on a column containing S. carlsbergensis immobilized on Amberlite XAD-4 has been developed. The optimum values of pH, amount of adsorbent, elution solution and flow rate of the sample solution were determined for the quantitative recovery of the analytes. The effect of interfering ions on the recovery of the analytes was also investigated. Under the optimum conditions, recoveries of Fe(III), Co(II) and Cr(III) by S. carlsbergensis immobilized on Amberlite XAD-4 were 99±2, 100±2 and 98±2% at 95% confidence level, respectively. The limit of detections for Fe(III), Co(II) and Cr(III) were 2.8, 3.9 and 7.4ngmL–1, respectively. The proposed method was applied to the determination of the analytes in various water samples. The validity of the method was checked with spiked water samples. Fe(III), Co(II) and Cr(III) was determined with a relative error of less than 5%.  相似文献   

4.
The reaction between CrVI and 12-tungstocobaltate(II) was carried out in 2.0 mol dm–3 HCl and followed a simple second order rate law. The reaction was catalysed by hydrogen ion due to the formation of active H2CrO4 and was inhibited by chloride ion as, in its presence, conversion of the active species into inactive chlorochromate occurs. Chromium(V) and chromium(IV) were generated in situ by the use of CrVI—VIV or CrVI—2-ethyl-2-hydroxybutyric acid and CrVI—i-PrOH reactions respectively, and the oxidation of 12-tungstocobaltate(II) by these atypical oxidation states, was also studied. The rate constants for the oxidation of 12-tungstocobaltate(II) by CrVI, CrV and CrIV were found to be in the ratio 1:1.2:5.2 respectively. The ionic strength did not affect the reaction, while decrease in the solvent polarity increased the rate of the reaction. The activation parameters were also determined and the values H , G and S were found to be 52.4 ± 6 kJ mol–1, 100.8 ± 7 kJ mol–1, –151.7 ± 10 J K–1 mol–1 respectively, supporting the mechanism proposed.  相似文献   

5.
Bis-[N(ethyl,m-tolyl)-dithiocarbamato] complexes of zinc(II), cadmium(II) and mercury(II), abbreviated as Zn(S2CNRR2, Cd(S2CNRR')2 and Hg(S2CNRR)2, where R is ethyl and R ism-tolyl, have been synthesized. These complexes have been characterized by elemental analyses, molecular weight determinations, conductance measurements and infrared spectral studies. Thermogravimetric studies on the complexes have been carried out in nitrogen and oxygen atmospheres to determine their modes of decomposition.
Zusammenfassung Bis-N-(äthyl,m-tolyl)-dithiocarbamatkomplexe von Zink(II), Cadmium(II) und Quecksilber(II), abgekürzt als Zn(S2CNRR)2, Cd(S2CNRR)2 und Hg(S2CNRR)2, mit R=Äthyl- und R=m-Tolyl-Gruppe bedeutet, wurden synthetisiert. Diese Komplexe wurden durch Elementaranalysen, Molekulargewichtsbestimmungen, Leitfähigkeitsmessungen und Infrarot-Untersuchungen charakterisiert. Thermogravimetrische Studien dieser Komplexe wurden in Stickstoff- und Sauerstoffatmosphäre durchgeführt um ihre Zersetzungsweise zu bestimmen.

Résumé On a réalisé la synthèse des complexes des dithiocarbamates bis-N-(éthyl,m-tolyl) de zinc(II), cadmium(II) et mercure(II), représentés par les formules abrégées Zn(S2CNRR)2, Cd(S2CNRR)2 et Hg(S2CNRR)2, où R et R sont respectivement les groupes éthyl et tolyl. Ces complexes ont été caractérisés par analyse élémentaire, détermination de la masse molaire, mesures de conductivité et spectrométrie infrarouge. Les études thermogravimétriques de ces complexes ont été effectuées en atmosphères d'azote et d'oxygène, afin de déterminer leurs modes de décomposition.

-N-( ,m-) (II), (II) (II), Zn(S2CNRR)2, Cd(S2CNRR)2 Hg(S2CNRR)2, R — , a R — . , , . , .
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6.
Summary Binuclear metal complexes of the type [M(HDDB)-(H2O)2]2: where HDDB=1-hydroxy-2,3-dimethyl-4-(3-methyl-4-amino-5-mercapto-1, 2, 4-triazole)-1,4-diaza-1, 3-butadiene and M=manganese(II), cobalt(II), nickel(II) and copper(II), have been prepared and characterised by elemental and thermal analyses, magnetic measurements, electronic and i.r. spectra. Octahedral geometry around the metal(II) ions is proposed and the crystal field parameters of the cobalt(II) and nickel(II) complexes are also calculated. Fungicidal screening of the complexes has been made aginstHelminthosporium oryzae andFusarium oxysporium.  相似文献   

7.
The binary and mixed-ligand complexes formed between ligands (histidine (His), histamine (Him) and glycine (Gly)) and some transition metals (Cu(II), Ni(II) and Zn(II)) were studied potentiometrically in aqueous solution at (25.0 ± 0.1) C and I = 0.10 M KCl in order to determine the protonation constants of the free ligands and stability constants of binary and ternary complexes. The complexation model for each system has been established by the software program BEST from the potentiometric data. The most probable binding mode for each binary species of histidine and for all mixed species was also discussed based upon derived equilibrium constants and stability constants related to the binary species. The ambidentate nature of the histidine ligand, i.e. the ability to coordinate histamine-like, imidazolepropionic acid-like and glycine-like modes was indicated from the results obtained. The stability of ternary complexes was quantitatively compared with their corresponding binary complexes in terms of the parameters, log K, log X and 1110. The concentration distributions of various species formed in solution were also evaluated. In terms of the nature of metal ion, the complex stability follows the trend Cu(II) > Ni(II) > Zn(II), which is in agreement with the Irving-Williams order of metal ions. Thus, the results obtained were compared and evaluated with those in the literature.  相似文献   

8.
Composites of cuprates of La(III) and Ba(II) were obtained by decomposing mixtures of oxalates of La(III), Ba(II) and Cu(II) prepared in 111 and 123 mol proportions respectively and sintering the oxide products at 1173 K. Reactions studied by TG, DTA and XRD techniques revealed the following features: (i) Decomposition of oxalates of La(III) and Ba(II) is drastically affected in mixtures. Decomposition temperature of organic part in the former (111) is shifted by 100 K while that of BaCO3 in the case of latter (123) is shifted by 400 K towards lower temperature side. (ii) All exothermic peaks on DTA traces of both the mixtures are allotted to the decomposition of oxalates to Cu2O, La2O2CO3 and BaCO3 phases while endothermic peaks around 863 and 1083 K are assigned for BaCuO2 and La2CuO4 phases respectively in the case of former (111) and endothermic peaks at about 1068, 1136 and 1213 K are correlated with BaCuO2, a composite of La2O3, La2CuO4 and La0.5Ba0.5CuO3– (0.5) phases and LaBa2Cu3O7– (0) phase respectively in the case of latter (123) and (iii) Lines of all cuprate compounds appear in XRD patterns of those samples preheated at temperatures 873 K. The following reaction is proposed in the case of 123 mixture: Authors are deeply thankful to the Authorities of Department of Atomic Energy (DAE), Goverment of India, for providing the funds for research project and to Professor A. V. Phadke, Department of Geology, University of Poona, for the valuable discussion.  相似文献   

9.
Summary Complexes of bidentate 3-amino-5-()-pyridyl-1,2,4-triazole (L1) and 3-amino-5-()-pyridyl-1, 2, 4-triazole (L2) of composition [ML1Cl2·H2O], [ML2Cl2·H2O], [ML 3 2/1 Cl2] and [ML 3 2/2 Cl2] [M=CoII, NiII, CuII, M=ZnII] have been prepared and characterized by elemental analyses, i.r., u.v./visible, e.s.r. spectra, magnetic moments and molar conductances.  相似文献   

10.
Equilibria occurring between glycine (L) and magnesium(II) and calcium(II) were studied by measuring at 25 °C the electromotive force (e.m.f.) of the cell: (–) Pt, H2/SolutionS/R.E. (+) where R.E. is the reference electrode described in the text.Equilibria taking place in solutions containing iron(II) and glycine were investigated by means of the cell: (–) R.E./SolutionS/G.E. (+) where G.E. is the glass electrode. The general composition of solutionS was in both cases the following: B M inM 2+;H M in H+;A M inL; 3.00M in ClO 4 ; (3-H-2B)M in Na+.Experimental data were explained by assuming the existence of the species:: MgL(log 1,0,1=1.53±0.05); MgL 2(log 2,0,1=2.26±0.05); CaL(log 1,0,1==0.75±0.03); FeL(log 1,0,1=4.20±0.04).Protonation constants of aminoacetate, not known in the experimental conditions selected, were determined by means of e.m.f. measurements carried out with a H2 electrode.
Komplexbildung zwischen Glycin und Magnesium(II), Calcium(II), bzw. Eisen(II) bei 25 °C in 3,00M NaClO4
Zusammenfassung Die Gleichgewichte zwischen Glycin (L) und Magnesium(II) bzw. Calcium(II) wurden bei 25 °C durch E.M.K. Messungen der folgenden Meßkette untersucht: (–) Pt, H2/ProbenlösungS/R.E. (+) wobei R.E. Referenz-Elektrode bedeutet (siehe Text).Zum Studium der Reaktion zwischen Eisen(II) und Glycin bei 25 °C wurde folgende Meßkette benutzt: (–) R.E./ProbenlösungS/G.E. (+) wobei G.E. Glas-Elektrode bedeutet.Alle Meßproben hatten die folgende allgemeine Zusammensetzung:B M inM 2+;H M in H+;A M inL; 3,00M in ClO 4 ; (3-H-2B)M in Na+.Die experimentellen Daten konnten unter Annahme folgender Komplexe erklärt werden: MgL(log 1,0,1=1,53±0,05); MgL 2(log 2,0,1=2,26±0,05); CaL(log 1,0,1=0,75±0,03); FeL(log 1,0,1=4,20±0,04). Die Protonierungskonstanten von Aminoacetat, die bei den gewählten experimentellen Bedingungen nicht bekannt sind, wurden mittels E.M.K. Messungen (mit Wasserstoff-Elektrode) bestimmt.
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11.
Ligand exchange between the compounds Co(AA)2Py2 and Co(AA)Clpyx (x=1 or 3) formed in the, system, CO(AA)2–SnR2Cl2(R=Ph, Et) in chloroform with pyridine has been established to be catalyzed by SnR2Cl2. An interpretation of the catalytic action of SnR2Cl2 is suggested.
, Co(AA2py2 Co(AA)Clpyx (x=1 3) (Co(AA)2–SnR2Cl2 (R=Ph, Et) , SnR2Cl2. SnR2Cl2.
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12.
The molecular structure of free aniline has been investigated by gas-phase electron diffraction and ab initio MO calculations at the HF and MP2 levels of theory, using the 6-31G*(6D) basis set. Least-squares refinement of a model withC s symmetry, with constraints from MP2 calculations, has led to an accurate determination of the C-C-C angle at theipso position of the benzene ring, =119.0±0.2 (where the uncertainty represents total error). This parameter provides information on the extent of the interaction between the nitrogen lone pair and the system of the benzene ring, and could not be determined accurately by microwave spectroscopy. The angles at theortho, meta, andpara positions of the ring are 120.3±0.1, 120.7±0.1, and 119.0±0.3, respectively. Important bond distances are r g(C-C)=1.398±0.003 å andr g(C-N) =1.407±0.003 å. The effective dihedral angle between the H-N-H plane and the ring plane, averaged over the large-amplitude inversion motion of the amino group, is ¦¦=44±4. The equilibrium dihedral angle is calculated to be 41.8 at the HF level and 43.6 at the MP2 level, in agreement with far-infrared spectroscopic information. The MO calculations predict that the differencer(Cortho-Cmeta) -r(Cipso-Cortho) is 0.008–0.009 å. They also indicate that the nitrogen atom is displaced from the ring plane, on the side opposite to the amino hydrogens. The displacement is 0.049 å at the HF level and 0.072 å at the MP2 level. The two calculations, however, yield very different patterns for the minute deviations from planarity of the ring carbons.  相似文献   

13.
This investigation presents an analysis of the critical behavior of mixtures of oligomers of propylene glycol, PG17, and ethylene glycol, EGn, withn=3, 4, 5, 6.4, 8.7, 12.1 and 22.1. The critical coordinates, c andT c were determined from the phase diagrams. The critical compositions compare very well with the Huggins-Flory predictions. The interaction parameter n is around one for EG3, EG4 and EG5 and it increases up to two for the higher oligomers. The break in the interaction parameter also corresponds to a minimum in the critical temperature. The phase diagrams and the interfacial tension were used to get the critical exponents and , respectively. The data were analysed with two approaches. First, from the temperature dependence of the length of the tie-lines and of the interfacial tension up to the upper critical solution temperature, UCST. Second, with the data at 30°C using the critical temperature of the systems as the variable. The first method led to =0.39±0.05 in good agreement with the result of the second method, =0.37±0.04. The exponents for the interfacial tension, , determined with the first method for PG17 with EG6.4, EG8.7 and EG12.1 are =1.66±0.11, 1.46±0.25 and 1.73±0.18, respectively. The second method led to =1.17±0.14. The critical exponents are compared to mean field and ising-3D predictions.  相似文献   

14.
The thermal properties of some complexes of copper(II) with pyridine-2-aldoxime (HPAO), where the ligand appears either as the ion (PAO) or as a neutral molecule, were determined in vacuo and in dynamic nitrogen and oxygen gas atmospheres. The study was carried out by thermoanalytical (TG, DTG. DTA), spectroscopic and spectrometric (UV-visible, IR, diffuse reflectance, mass) techniques.The initial decomposition temperature is influenced by the number of acid hydrogens in the complex; the thermal stability sequence in vacuo is: [Cu(PAO)2H]Cl > [Cu(PAO)2H2]Cl2 > [Cu(PAO)2]The thermal decomposition reactions occur in several separate steps, the first of which gives rise to partial ligand decomposition, the reduction of copper(II) to copper(I), and the conversion of the residual pyridine-2-aldoxime into acid amide.
Zusammenfassung Die thermischen Eigenschaften einiger Komplexe von Kupfer(II) mit Pyridin-2-aldoxim (HPAO), in denen der Ligand entweder als Ion (PAO) oder als neutrales Molekül vorliegt, wurden im Vakuum und in dynamischer N2- und O2-Atmosphäre ermittelt. Zur Untersuchung wurden thermoanalytische (TG, DTG, DTA) und spektrometrische (UV-sichtbar, IR, diffuse Reflektionsspektrophotometrie, Massenspektrometrie) Techniken herangezogen. Die Temperatur, bei der die Zersetzung beginnt, wird durch die Zahl der sauren Wasserstoffatome im Komplex beeinflußt; für die thermische Stabilität im Vakuum gilt die Reihenfolge [Cu(PAO)2H]Cl > [Cu(PAO)2H2]Cl2 > [Cu(PAO)2]. Die thermischen Zersetzurigsreaktionen verlaufen in mehreren diskreten Schritten, wobei der erste von diesen eine partielle Zersetzung des Liganden, die Reduktion von Kupfer(II) zu Kupfer(I) und die Konversion des verbleibenden Pyridin-2-aldoxims in das Säureamid in sich einschließt.

-2- ( ), (-), . (, , ) , - , , - . , [Cu(PAO)2H]CI > [Cu(PAO)2H2]Cl2 > [Cu(PAO)2] , , -2- .
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15.
The seeds ofCheiranthus allioni hort. have yielded three new cardenolides the structures of which have been established and which have been named as 4-dehydrosarmentogenin (II), 4-dehydrosarmentogenin rhamnoside (I), and 4-dehydrosarmentogenin rhamnoglucoside (IV). (II) — C23H32O5. m.p. 296–302°, [] D 20 +26.2±3° (in pyridine) is 3,11,14-trihydroxy-14-card-4,20(22)-dienolide. (I) C29-H42O9, m.p. 268–275°, [] D 20 –38.2±3° (chloroform-ethanol) is 11,14-dihydroxy-3--L-rhamnopyranosyloxy-14-card-4,20(22)-dienolide.(IV) C35H52O14, [] D 20D –44.1±3° (methanol), is 3-(4-O--D-glucopyranosyl--L-rhamnopyranosyloxy)-14-card-4, 20(22)-dienolide. An independent synthesis of 4-dehydrosarmentogenin (II) has been carried out, starting from 3,5,11,14-tetrahydroxy-5,14-card-20(22)-enolide, which has confirmed its structure.For Communication XI, see [1].All-Union Scientific-Research Drug Institute, Kharkov. Kharkov State Pharmaceutical Institute. Translated from Khimiya Prirodnykh Soedinenii, No. 1, pp. 119–125, January–February, 1987.  相似文献   

16.
Summary Vis spectrophotometry has been used to study various ligand substitution equilibria (1) and (2) involving four-coordinate copper(II) and nickel(II) his chelate complexes in methanol, propan-2-ol and toluene. MA2 + HB MAB+HA, K1 (1) MAB + HB MB2 + HA, K2 (2) The Schiff base ligands, HA and HB, which are monobasic and bidentate, represent salicylaldimine type N,O-ligands ( HSA=NR) (1) or pyrrole-2-aldimine type N,N-ligands ( HPA=NR) (2) with different branching at the - or (3-carbon of the organic group R. For both types of ligand the relative thermodynamic stability of their copper and nickel complexes is governed mainly by the steric demands of R, which determine the degree of tetrahedral distortion. The order of stability as given by = K1 K2 is: t-Bu < neo-Pent < i-Pr < i-Bu < Et < n-Pr. The K1/K2 ratio is strongly solvent dependent in the sense that the mixed ligand species MAB is stabilised in toluene relative to methanol. Such a solvent effect is not observed for . The MAB complexes could not be isolated. The vis spectrum of the mixed ligand species Ni(SA=NiPr, SA=NEt) was calculated by computer fitting of the experimental data.  相似文献   

17.
Summary The -allylmolybdenum(II) complexes [MoX(CO)2-(NCMe)2(3-C3H4R)] (X=Cl, Br and I; R=H and 2-Me) react either in dichloromethane or acetonitrile with thiosemicarbazones to give the new complexes [MoX-(CO)2(RRCNNHCSNH2)(3-C3H4R)] (R=H or Me; R'=Me, Et, Pr or Ph)via displacement of acetonitrile ligands.  相似文献   

18.
Simultaneous TG/DTG/DTA studies under non-isothermal conditions have been carried out in air and nitrogen on some halo-dithiocarbamates of the general formula XM[S2CN(CH2)5]2 (X=Cl, Br and I; andM=As, Sb and Bi).E* values for the 1st stage of decomposition were determined by graphical methods and the TTN temperatures were calculated from the TG profiles. A possible mechanism of the decomposition reaction is suggested, based on the thermoanalytical and pyrolysis results and the mass spectral data. The kinetic analysis data on five of the above dithiocarbamates and nine complexes of the general formula M[S2CN<]3 (M=As, Sb and Bi; and N<=NEt2, N(CH2)5 and N(CH2)4O) were studied by the QIA (quasi-isothermal analysis) technique in air atmosphere. An example of kinetic parameter (k andn) estimation for the first decomposition stage is given for Bi[S2CN(CH2)5]3, with the assumption of different kinetic equations.
Zusammenfassung Einige helo-Dithiocarbamate der allgemeinen Formal XM[S2CN(CH2)5]2 (X=Cl, Br und I;M=As, Sb und Bi) wurden mittels simultaner TG/DTG/DTA unter nichtisothermen Bedingungen in Luft und Stickstoff untersucht. Für den ersten Zersetzungsschritt wurden E*-Werte durch graphische Methoden bestimmt und die TIN-Temperaturen aus den TG-Profilen berechnet. Ein auf den Ergebnissen der Thermogravimetrie und Pyrolyse sowie auf massenspektroskopischen Daten beruhender möglicher Mechanismus wird vorgeschlagen. Fünf der angeführten Dithiocarbamate und 9 Komplexe der allgemeinen Formel M[S2CN<]3] (M=As, Sb und Bi;N=NEt2, N(CH2)5 und N(CH2)4O) wurden mittels QIA (quasi-isotherme Analyse) in Luft untersucht. Als Beispiel ist die Bestimmung der kinetischen Parameter (k undn) für den ersten Schritt der Zersetzung von Bi[S2CN(CH2)5]3 unter Annahme verschiedener kinetischer Gleichungen angegeben.

, - XM[S2CN(CH2)5]2, =Cl, r l, a M=As, Sb Bi. a , -. - . M[S2CN<]3, M=As, Sb Bi, a N<=NEt2, N(CH2)5 N(CH2)4O. k 3[S2N(2)5]3.
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19.
The thermodynamic proton ligand and metal ligand stability constants of N-m-tolyl-p-methylbenzohydroxamic acid with Cu(II), Zn(II), Ni(II), and Mn(II) have been determined at 25° and 35° in several dioxane-water media. The pK a and logK 1 (logK 2 or log 2) varies linearly with the mole fraction of dioxane at a given temperature but not linearly with the reciprocal of dielectric constants of the medium. Values of G o, H o, and S o are tubulated. The stabilities of the complexes mostly follow the order of electron affinities of the metal ions. An attempt has been made to calculate the ligand field stabilization energy of the complexes.

Mit 2 Abbildungen  相似文献   

20.
Summary The interactions of CuII witho-hydroxyacetophenone (OHA) and its halogeno- and nitro-substituted derivatives were investigated potentiometrically in dioxane-water mixtures by the Calvin-Bjerrum titration technique at 25° C and ionic strength =0.1 M (NaClO4). All the ligands form 11 and 12 chelates with CuII.The variations of pK with mole fraction of dioxane and 1/D were almost linear. Linearity was observed in the plots of log K1/logK2 versus pK, and the magnitudes of slopes led to the conclusion that -donation is: (i) strong in aqueous medium and decreases with the increase in dioxane content in 11 chelates, and (ii) weak and does not change with dioxane, in 12 chelates.  相似文献   

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