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1.
Conductance data are reported for Ph4AsPic, Ph4PPic, Ph4SbPic, Hex4NPic, Bu4PPic, Et4NSbCl6 in propylene carbonate at 25°C in the concentration range 1×10–4 to 15×10–4 M. The data were analyzed by the Justice modification of the Fuoss-Hsia equation and all salts studied were found to be associated and to form solvent separated ion pairs. Application of the Barthel-Bjerrum model of ion association permitted calculation of the non coulombic portion of the potentials of mean force, W±. Ionic limiting equivalent conductances of six ions were calculated using known values of R4N+, and Pic ions. Walden products of ions in propylene carbonate were examined in the light of modern ion mobility theories, including Boyd-Zwanzig, Hubbard-Onsager, and Hubbard-Kayser models of ion solvent interactions.  相似文献   

2.
Densities of CsX (X = Cl, Br, I), NaBr, (C4H9)4NBr, and NaBPh4 in (0, 20, 40, 60 and 80) mass % acetone + water have been measured over the entire composition range at 298.15 K. The apparent and limiting partial molar volumes of the electrolytes and ions in their mixtures have been evaluated from these densities.  相似文献   

3.
The kinetics of the oxidation of diethyl sulfide (Et2S) with hydrogen peroxide, catalyzed by hydrogen carbonate and silicate anions, agree with the assumption that peroxymonocarbonate (HCO 4) and peroxymonosilicate (HSiO 4) anions are formed as intermediates. The rate of reaction of Et2S with HCO 4 is about 100 times as fast as with H2O2. Transfer to aqueous–alcoholic solutions leads to an increase in the solubility of Et2S while retaining the catalytic effects.  相似文献   

4.
The densities of tetraalkylammonium bromide, R4NBr (R = Et, Pr, Bu, Hex, Hep, Oct), solutions in dimethylformamide have been measured for the composition range (0.05–0.4) mol-kg−1 at 25 C. Apparent molar Vφ and limiting partial molar volumes 2o of the electrolytes have been evaluated. Using the extrapolation values, the limiting partial molar volumes of the tetraalkymammonium ions (io) have been calculated. Analysis of different contributions to the ionic io indicated partial penetration of solvent molecules into the van der Waal’s volume of tetraalkylammonium (TAA) ions.  相似文献   

5.
Densities of Bun 4NBr solutions in MeOH, MeOD, and CD3OH were measured at salt concentrations of up to 1.5 solvomolality units (nearly 2.63·10–2 mole fraction) at 278.15, 288.15, 298.15, 308.15, and 318.15 K. The limiting partial molar volumes of Bun 4NBr dissolved in these alcohols were calculated. The isotope effects in the volume characteristics of the stoichiometric mixture of ions, [Bun 4N+ + Br], are mainly due to the vibrational changes in the solvent structure upon deuteration of different molecular fragments. Structural transformations in infinitely dilute solution of Bun 4NBr in methanol are governed by non-specific solvation of the symmetrical Bun 4N+ cation.  相似文献   

6.
Enthalpies of the solution of 1–1 electrolytes (LiBr, LiI, NaI, NaBPh4, R4NBr (R=Me, Et, Pr, Bu, Am), Et4NCl, Bu4NI, Ph4PBr) in n-propanol were determined experimentally from–50 to 50°C. Standard enthalpies of solution of the electrolytes studied were determined on the basis of the extrapolation equation of Debye-Hueckel theory and taking ionic association into account. The reference salt Ph4PBPh4 was used to obtain the ionic solvation properties. Partial molar heat capacities of ions in propanol were calculated and compared to our previously reported data for ethanol. The changes in the ionic heat capacities with temperature are discussed.  相似文献   

7.
The data on coadsorption of tetraethylammonium (Et4N+), tetrapropylammonium (Pr4N+), and tetrabutylammonium (Bu4N+) cations with Cl, Br, and I anions on an uncharged mercury electrode are compared with the models of coadsorption in a common monolayer and two parallel layers. The second model is shown to be in best agreement with experimental isotherms. However, the least discrepancy between calculations and experimental results is obtained when coadsorption of mentioned cations and anions is described by the Frumkin isotherm for neutral molecules with certain effective adsorption parameters.  相似文献   

8.
Viscosity and desity data for KCl, KBr, Me4NBr, Et4NBr, Pr4NBr, and Bu4NBr from 0.005 to 3M in aqueous dimethylformamide solutions at 25°C and 35°C are presented. The data for dilute solutions were analyzed by means of the Jones-Dole equation and the ionic B coefficients evaluated. The data for concentrated solutions were analyzed by the Breslau and Miller equation and the effective flow volume, V3 of the electrolytes obtained as a function of concentration. The limiting effective flow volume, V e o was obtained from the Vand equation in the form used by Eagland and Pilling and it is shown that B=2.5 V e o . With increasing DMF concentration V e o increases for Me4NBr but decreases for Pr4NBr and Bu4NBr. The same effect was observed by increasing temperature. This behavior is explained in terms of the structuring effect of the constituent ions and the effect of DMF on the overall structure of the binary solvent.  相似文献   

9.
Experimentally determined are the enthalpies of solution of 12 electrolytes (LiBr, LiI, NaBr, NaI, NaBPh4, Et4NCl, Et4NBr, Pr4Br, Bu4NBr, Am4NBr, Ph4PCl, Ph4PBr) in ethanol at –50 to 55°C. sHo values obtained on the basis of four different extrapolation equations are analyzed. The effect of temperature changes on the thermodynamic parameters of solvation indindividual ions are calculated using thermodynamic data for the salt crystals (lattice) with the assumption that solvC p o (Ph4P+)=solvC p o (Ph4P-).  相似文献   

10.
The enthalpies of solution of tetraethyl- and tetra-n-hexylammonium bromides have been measured in mixtures of formamide with ethylene glycol at 298.15 and 313.15 K in the whole mole fraction range by the calorimetric method. The standard enthalpies of solution in binary mixtures have been calculated with Redlich–Rosenfeld–Meyer type equation. The enthalpy and heat capacity parameters of pair interaction of organic electrolytes with EG in FA and with FA in EG have been computed and discussed. The enthalpy interaction parameters of single ions with EG in FA medium have been evaluated and compared with those for ion–water and ion–MeOH interaction in FA. The standard heat capacities of solution have been evaluated. The excess enthalpies of solution, Δsol H E, of Et4NBr, Bu4NBr, and Hex4NBr have been determined. The Δsol H E values are positive for Et4NBr and negative for Bu4NBr and Hex4NBr and become more negative from Bu4NBr to Hex4NBr.  相似文献   

11.
Conductance measurements for twenty-five uni-univalent electrolytes in 2-cyanopyridine at 30°C (dielectric constant=93.8) were made over the concentration range of 1.4-100×10–4 mol-dm–3. All conductance data were evaluated by the Lee-Wheaton equation. The results indicate only slight association for most of the salts but Et2H2NBr and Et3HNBr are quite strongly associated while ammonium picrate, AgNO3 and LiClO4 show less, but significant, association. Picric acid was found to be a weak acid in 2-cyanopyridine. Ionic limiting equivalent conductances were evaluated using (i-Pent)3BuNPh4 as a reference electrolyte. Anions appear tobe poorly solvated while cations show some evidence of ion-solvent interaction. Solubilities were determined for eight salts of moderate-to-low solubility in 2-cyanopyridine. Single ion free energies of transfer from water to 2-cyanopyridine were estimated for ions from these salts using the AsPh4NBPh4 approximation. The results indicate that 2-cyanopyridine is not a particularly good solvating medium for most common inorganic salts.This study was presented, in part,at the Fifth International Conference on Non-Aqueous Solutions, University of Leeds, England, July 1976.  相似文献   

12.
Ultrasonic absorption data obtained over the frequency range 5–95 MHz by the pulse method are reported for tetraethylammonium bromide, 1,5-bis-(triethylammonium) pentane dibromide and 1,10-bis(triethylammonium) decane dibromide in 2-propanol in the temperature range 0–25°C. A single relaxation curve is observed under all experimental conditions. The relaxation frequencies depend linearly on the salt concentrations. The excess absorption of these three salts in 2-propanol is mainly attributed to an ion association process. The thermodynamic and kinetic parameters of (Et) 4 NBr in 2-propanol were obtained from the ultrasonic data and previously published conductance data. The difference between the behavior of Et 4 NBr and the bolaform salts is discussed.  相似文献   

13.
Summary Rate constants have been determined for the reaction of [PtCl4]2– with cyanide in water and in 20% and 40% (v/v) methanol, and for the reaction of [Pd(Et4dien)Cl]+ with thiourea in water, in 50% methanol, and in 50% DMSO, in all cases at 298.2K. The solubility of K2PtCl4 has been determined in water and in 20% and 40% methanol; the solubility of [Pd(Et4dien)Cl]Cl has been determined in water, in 20%, 40%, 60%, and 80% methanol, and in 40% and 80% DMSO; again in all cases at 298.2K. From these solubilities, Gibbs free energies of transfer for the [PtCl4]2– and [Pd(Et4dien)Cl]+ ions have been estimated. From these transfer data, published transfer data for cyanide and thiourea, and these and earlier kinetic results, solvent effects on reactivity have been dissected into their initial state and transition state components for the following four reactions: [PtCl4]2– hydrolysis, [PtCl4]2– plus cyanide, [Pd(Et4dien)Cl]+ substitution, and [Pd(Et4-dien)Cl]+ plus thiourea. The patterns thus established are discussed, and compared with those previously obtained for some other reactions of transition metal complexes.  相似文献   

14.
The hydrolysis reaction rate of p‐nitrophenyl benzoate (p‐NPB) has been examined in aqueous buffer media of pH 9.18, containing surfactants, cetyltrimethylammonium bromide (CTAB) and chloride (CTAC), or sodium dodecyl sulfate (SDS) at 35°C. Although the rate constant [log (k /s−1)] of p‐NPB hydrolysis has once decreased slightly below the critical micelle concentration (CMC) value for CTAB and CTAC, it has begun to increase drastically with micellar formation. With increasing concentrations larger than the CMC value, the log (k /s−1) value has reached the optimal value, i.e., a 140‐ and 200‐fold rate acceleration for CTAB and CTAC, respectively, compared to that without a surfactant. Whereas the anionic surfactant, SDS, has caused only a gradual rate deceleration in the whole concentration range (up to 0.03 mol dm−3). Increases in pH of the buffer have resulted in increases of the hydrolysis rate. In the CTAB micellar solution, the remarkably enhanced rate has been retarded significantly by the addition of only 0.10 mol dm−3 bromide salts. The effects of rate retardation caused by the added salts follows in the order of NaBr > Me4NBr > Et4NBr > Pr4NBr > n‐Bu4NBr. In the absence of surfactant, however, the addition of the bromide salts has accelerated the hydrolysis rate, except for the metallic salt of NaBr, with the order of Me4NBr < Et4NBr < Pr4NBr < n‐Bu4NBr. In the CTAC micellar solution, similar rate retardation effects have been observed in the presence of chloride salts (NaCl, Et4NCl, and n‐Bu4NCl). The effects of added salts have been interpreted from the viewpoints of the changes in activity of the OH ion and/or the nucleophilicities of the anions from the added salts.  相似文献   

15.
We have studied, by conductivity measurements, the formation of hydrogenbonded complexes between imidazoles and ions in the three systems triethylammonium picrate (Et3NHPic)+imidazole (Im), triethylammonium bromide (Et3NHBr)+Im, and Et3NHPic+1-methylimidazole (1-MeIm) in nitrobenzene in order to specify the importance of the two functions of the imidazole molecule, the tertiary nitrogen N3, and the imino group N1-H. While 1-MelIm forms only a single complex with the cationic species Et3NH+, imidazole enters into specific interactions as well with the cations through its basic site N3 and with the anions through its imino group. The complexing of the anions by imidazole, always weaker than the complexing of the cations, is more effective for Br than for Pic. Moreover, if imidazole is used as ligand, a 1:2 complex is formed between the cation and the imidazole, in which the second molecule of imidazole is bonded to the N-H group of the first by a hydrogen bond at the tertiary N atom. We did not observe a correlation between the equilibrium constants K 1 + for the complexing of the cation Et3NH+ by imidazole and pyridines (k 1 + for pyridine, 3–4 dimethylpyridine, and imidazole are 8, 24, and 165, respectively) and the pK a values of these ligands due to the fundamental difference in the structure of the imidazole and pyridine molecules, although both are considered as aromatic nitrogen bases.  相似文献   

16.
The enthalpies of solution of tetraethyl- and tetra-n-hexylammonium bromides have been measured in mixtures of formamide with ethylene glycol at 298.15 and 313.15 K in the whole mole fraction range by the calorimetric method. The standard enthalpies of solution in binary mixtures have been calculated with Redlich–Rosenfeld–Meyer type equation. The enthalpy and heat capacity parameters of pair interaction of organic electrolytes with EG in FA and with FA in EG have been computed and discussed. The enthalpy interaction parameters of single ions with EG in FA medium have been evaluated and compared with those for ion–water and ion–MeOH interaction in FA. The standard heat capacities of solution have been evaluated. The excess enthalpies of solution, Δsol H E, of Et4NBr, Bu4NBr, and Hex4NBr have been determined. The Δsol H E values are positive for Et4NBr and negative for Bu4NBr and Hex4NBr and become more negative from Bu4NBr to Hex4NBr.  相似文献   

17.
The influence of anions ClO4 , NO3 , Cl, SO4 2–, and DDS (dodecyl sulfate) on the cyclic voltammetric response of polypyrrole-modified electrodes is studied. The change in the film composition is examined by electron probe microanalysis. It is established that essential changes in the shape of voltammograms take place during cycling if the anions are not sufficiently freely mobile in the polymer film and insertion of cations from the solution is necessary to guarantee electroneutrality of the system. Some differences between the mobility of Cl ions and ClO4 or NO3 ions are in good agreement with the results of semi-empirical quantum chemical calculations showing that the interaction of Cl and Br ions with pyrrole oligomers is stronger than that of NO3 or ClO4 ions. Nevertheless, it is established that the peak current determined from voltammograms increases linearly with the increase of the scan rate with very high correlation coefficient. It means that it is possible to describe the behavior of ClO4 , NO3 and Cl ions in the framework of the model of free ions. The redox behavior of the PPy films doped with anions of low mobility such as SO4 2– and DDS depends essentially on the nature of cations in the test solution. It is found that the mobility of cations increases in the row Li+ < Na+ < K+ < Cs+. The mobility of DDS ions in the PPy in ethanolic solution is significantly higher and their electrochemical properties are quite similar to PPy|Cl or NO3 film in aqueous solution.  相似文献   

18.
The values of the partial molal volumes for NaI, Kl, Et4NCl, Bu4NI, and R4NBr (R=Me, Et, Pr, Bu, Am) at infinite dilution in ethanol between 233 and 313 K are reported. Using a method proposed by the authors, partial molar volumes are divided into their ionic constituents at all the temperatures investigated. The changes of the partial molar volumes with temperature are positive for cations and decrease with a decrease in the ionic size whereas those for halide ions are negative and practically independent of the ionic size. The various contributions to the partial molar volume were evaluated and their dependence on the ionic nature and temperature are discussed.  相似文献   

19.
17O-NMR spin-lattice relaxation timesT 1 of D2O molecules were measured at 5–85°C in D2O solutions of alkali metal halides (LiClCsCl, KBr, and KI), DCl, KOD, Ph4PCl, NaPh4B, and tetraalkylammonium bromides (Me4NBrAm4NBr) in the concentration range 0.1–1.4 mol-kg–1 TheB-coefficients of the electrolytes obtained from the concentration dependence of relaxation ratesR 1=1/T1 were divided into the ionicB-coefficients by three methods: (i) the assumption ofB (K+)=B(Cl), (ii) the assumption ofB(Ph4P+)=B(Ph4B), and (iii) the use ofB(Br) obtained from a series ofB(R4NBr). It was found that Methods (ii) and (iii) resulted in an abnormal temperature dependence of theB-coefficients of alkali metal ions and a negative values of rotational correlation times c at lower temperatures for hydroxide and halide ions. These results suggest that the methods based on the van der Waals volume are not adequate for the ionic separation of NMRB-coefficients. From the analysis using the assumption ofB(K+)=B(Cl), it was found that D3O+, OD, and Me4N+ ions are the intermediates between structure makers and breakers, and that the hydrophobicity of phenyl groups is weaker than that of alkyl groups due to the interactions between water molecules and -electrons in phenyl groups.  相似文献   

20.
EXAFS spectroscopy has been shown to be a reliable tool for detecting the formation in solutions of molecular associations (LiBr)n where n is solvent dependent. The signal Br*...Br observed at 3.87 Å confirms the formation of tetrameric species (n=4) in diethylether (Et2O) but only of dimers (n=2) in diethylcarbonate. Another signal observed at 2.45 Å has·been attributed to the pair Br*...Li. The study of Li2MBr4–Et2O solutions (M=Co, Cu, Zn) also affords new evidence for the formation of complex anions MBr 4 2– but the spectra obtained at the bromine or metalK-edges for LiZnBr3–Et2O solutions seems to indicate the formation of more complex aggregates (LiMBr3)q. While the signal of the shell Br*...Br is found quite intense for the reference CBr4–Et2O system, it does not appear for the MBr 4 2– complex except for CuBr 4 2– where the Jahn-Teller effect might rigidify a distorted tetrahedral structure.Presented, in part, at the VIIth International Conference on Non-Aqueous Solutions, Regensburg, West Germany, Ausgust 1980.  相似文献   

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