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1.
The solubilities of potassium fluoride, chloride, and bromide in ethanol, formamide, and N-methylformamide and in binary mixtures
of these solvents were determined at 25°C. The standard molar Gibbs energies of solution, Δsoln
G
o, in the neat solvents were related to their hydrogen bonding abilities. The values of Δsoln
G
o in the mixtures were fitted with expressions of the quasilattice quasichemical theory, and the preferential solvation of
the ions was thereby established. 相似文献
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Volkova M. A. Kuz’mina I. A. Kuz’mina K. I. Belova N. V. Sharnin V. A. 《Russian Journal of Physical Chemistry A, Focus on Chemistry》2018,92(10):2095-2097
Russian Journal of Physical Chemistry A - The enthalpies of solvation of piperidine (Ppd) in methanol (MeOH), ethanol (EtOH), N,N‑dimethylformamide (DMF), and dimethylsulfoxide (DMSO) are... 相似文献
4.
Formation constants of Li+ complexes with 4-substituted dibenzo-14-crown-4 (DB14C4; 4-substituted group: methyl-, tert-butyl-, H-, bromo-, chloro-, formyl-, nitro-) ligands were determined by 7Li NMR spectrometry for solutions in nitromethane (NM), acetonitrile (ACN), propylene carbonate (PC), acetone (AC), Pyridine (Py), tetrahydrofuran (THF), dimethyl sulfoxide (DMSO), and N,N′-dimethyl formamide (DMF). Only a 1:1 complex was formed in solvents with a small or medium donor number. The formation constants of these complexes are strongly influenced by the size of the metal ion – the effect of the size of the cavity, by the solvent and by substituent. The stability of lithium ion with different substituents on DB14C4 decreases in the order methyl- > tert-butyl- > H- > bromo- > chloro- > formyl- > nitro- in various solvents. A good Hammett correlation was found by plotting log Kf vs. ∑σ in PC and AC. The extent of the substituent effect increases as the donor number of solvent decreases. The complexes were both enthalpy and entropy stabilized. The same magnitude of ΔS° value for different substituents indicates formation with a similar configuration upon complexation between crown ether and lithium ion. A slight variation in entropy contribution was observable depending on the nature of the alkyl substituent, whereas a large variation in enthalpic contribution shows a remarkable substituent effect upon complexation; the effect can reach 70% in magnitude. 相似文献
5.
A conductance study of the interaction between ammonium ion and 18‐Crown‐6 (18C6), dicyclohexano‐18‐crown‐6 (DC18C6), ditertbutyl‐dicyclohexano‐18‐crown‐6 (t‐bu)2DC18C6, diaza‐15‐crown‐5 (DA15C5), dibenzo‐21‐crown‐7 (DB21C7) and N‐Phenylaza‐15‐crown‐5 (NPA15C5) in acetonitril‐di‐methylsulfoxide mixture was carried out at various temperatures. The formation constants of the resultant 1:1 complexes were determined from the molar conductance‐mole ratio data and found to vary in the order of DA15C5 > DC18C6 > 18C6 > (t‐bu)2DC18C6 > DB21C7 > NPA15C5. The enthalpy and entropy of the complexation reactions were determined from the temperature dependence of the formation constants. 相似文献
6.
Yasuyuki Takeda Yusuke Mochizuki Yasumasa Matsuzaki Shoichi Katsuta 《Journal of inclusion phenomena and macrocyclic chemistry》2000,37(1-4):179-195
Formation constants of 1 : 1 19-crown-6(19C6) complexes with alkali metal ions weredetermined conductometrically at 25 °Cin acetonitrile(AN), propylene carbonate (PC), methanol, DMF, andDMSO. 19C6 always forms the most stable complex withK+. The selectivity order of 19C6 forheavy alkali metal ions isK+ > Rb+ > Cs+.The selectivity for Na+ varies withthe solvent; that for Li+ is the second lowest(AN, DMSO) or the lowest (PC). Transfer activity coefficients(SH
2 O) of19C6 from water to the nonaqueous solvents (S) weremeasured at 25 °C. The contributions of a methylenegroup and an ether oxygen atom to thelog SH
2 Ovalue of a crown ether wereobtained. The SH
2 Ovalues of the 19C6–alkali metal ion complexes(SH
2 O (ML+)) werecalculated, M+ and L denoting an alkali metal ionand a crown ether, respectively. For AN, PC, andCH3OH, although the M+ ion is more stronglysolvated by water than by AN, PC, or CH3OH, thelog SH
2 O (ML+) islarger than the correspondinglog SH
2 O (L)expect for the case of M+ = Li+.The higher lipophilicity of the19C6 complex ion is attributed to an enforcement ofthe hydrogen-bonded structure of water for the complexion caused by the greatly decreased hydrogen bondingbetween ether oxygen atoms and water uponcomplexation. For DMF and DMSO, thelog SH
2 O (ML+) is also greater thanthe correspondinglog SH
2 O (L).It was concluded from thisfinding that the unexpectedly lowest stability of the19C6 complex ion in water is due to the hydrogenbonding between 19C6 and water. The stabilities and thelog SH
2 Oof 19C6–alkali metal ion complexes were compared with those of 18C6complexes. 相似文献
7.
N. P. Evlampieva T. A. Dmitrieva E. I. Ryumtsev 《Russian Journal of Applied Chemistry》2003,76(10):1637-1642
Electrooptical Kerr effect and dielectric polarization were studied for poly-N-vinylpyrrolidone solutions in chloroform and in mixed chloroform-CCl4 solvent. The results were compared with those for an analogue of the monomeric unit of poly-N-vinylpyrrolidone, low-molecular-weight compound N-methylpyrrolidone. 相似文献
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Yizhak Marcus 《Journal of solution chemistry》2006,35(2):251-277
The Kirkwood–Buff integrals and the volume-corrected preferential solvation parameters for the first solvation shell of binary
mixtures of tetrahydrofuran with many organic solvents, calculated from reported thermodynamic data at the temperatures for
which these data were available, are reported. The co-solvents include c-hexane, methyl-c-hexane, n-heptane, i-octane, benzene, toluene, ethylbenzene, 1-chlorobutane, dichloromethane, 1,2-dichloroethane, chloroform, 1,1,1-trichloroethane,
tetrachlorom-ethane, tetrachloroethene, hexafluoro benzene, ethanol, 1-propanol, 2-propanol, dibutyl ether, acetic acid, acetone,
dimethyl sulfoxide, tetramethylene sulfone (sulfolane), acetonitrile, pyrrolidine, and triethylamine. The preferential solvation
parameters of these mixtures are discussed in terms of the interactions that occur. 相似文献
11.
本文以电导法测定了12-磷钨、12-硅钨酸在一些醇、酯、醛、酮等含氧有机溶剂以及乙腈中的离解常数,得到的结果表明,两种酸在同种溶液中的离解常数接近,磷钨酸的略高,同一种酸在不同溶剂中的离解常数则与溶剂的介电常数有密切关系。在醚中,因杂多酸与溶剂发生缔合作用,用电导法得不到其离散常数。 相似文献
12.
Aparna Sil & Ashwini K. Srivastava 《Supramolecular chemistry》2013,25(5):343-351
Complexation of Cu(II), Zn(II), Ni(II), Co(II), Pb(II), Cd(II), Cr(III) and Fe(III) ions with 15-crown-5, benzo-15-crown-5, 18-crown-6, dibenzo-18-crown-6, dicyclohexano-18-crown-6, dibenzo-24-crown-8, 5,6,14,15-dibenzo-1,4-dioxa-8,12-diazacyclopentadeca-5,14-diene, 1,4,10-trioxa-7,13-diazacyclopentadecane and cyclam has been investigated in 75% (v/v) DMF+water using the silver(I) ion as an auxiliary cation at 0.05?M ionic strength adjusted with tetrabutylammonium perchlorate (TBAP) by competitive potentiometry. Stability constant values obtained for the metal ion–aza macrocyclic complexes are higher than those for the oxa crowns. Shifts in the peak potential and reduction in the peak current in the differential pulse polarography (DPP) method were also used to determine the stability constants of some of the metal ions with aza and tosylated-aza macrocycles using TBAP as supporting electrolyte in 75% (v/v) DMF+water and 90% (v/v) DMSO+water media. Stability constant values determined both by shifts in the potential and by reduction in the peak current were found to be in good agreement with each other. 相似文献
13.
Complexation of K+ by 18-crown-6 ether (18C6) in pure water and in acetonitrile–water mixed solvents containing 0.1 mol-dm? 3 (C2H5)4NCl has been systematically studied by isothermal titration calorimetry (ITC) at 293, 298, and 303 K. The formation constant K of the 1:1 [K(18C6)]+ complex and the complexation enthalpy Δ rH were simultaneously determined from the titration data. The logK and Δ rH(kJ-mol? 1) values at 298 K are 2.04, ?26.2 in pure water and 2.23, ?25.0; 2.61, ?24.2; 2.95, ?23.8; 3.48, ?21.0; 3.85, ?19.4; 4.36, ?18.7; and 5.73, ?17.0 in the mixed solvents at x AN (mole fraction of acetonitrile) of 0.043, 0.135, 0.258, 0.448, 0.578, 0.759, and 1.0, respectively. The change in heat capacity for the complex formation, Δ C p °, was also determined by the temperature dependence of Δ rH. Whereas the Δ C p ° is (57 ± 11) and (63 ± 20) J-mol? 1-K? 1 in pure water and in the solvent mixture at x AN = 0.043, respectively, it decreases with increasing x AN. The Δ C p ° values are ?(48 ± 11), ?(110 ± 25), ?(354 ± 40), ?(359 ± 24), and ?(304 ± 30) J-mol? 1-K? 1 at x AN = 0.135, 0.258, 0.448, 0.578, and 0.759, respectively. The changes in complexation thermodynamics (Δ Δ rG, Δ ΔrH, and Δ Δ r S) are discussed in terms of the corresponding transfer thermodynamics of K+, 18-crown-6, and [K(18C6)]+ upon transferring from water to acetonitrile–water mixed solvents. It was found that hydrophobic solvation of the complex [K(18C6)]+ plays an important role in complex formation occurring in water and in the water-rich mixed solvent. Moreover, changes in solvent structure significantly affect the transfer enthalpy and entropy of each species, i.e., K+, 18-crown-6, and [K(18C6)]+. The observed monotonous changes in the complexation Gibbs energy, enthalpy, and entropy with solvent composition are due to the effective compensation of the Δ trG, Δ trH, and Δ tr S for K+ with those for 18-crown-6 and [K(18C6)]+. 相似文献
14.
Kuz’mina I. A. Volkova M. A. Kuz’mina K. I. Belova N. V. Sharnin V. A. 《Russian Journal of Physical Chemistry A, Focus on Chemistry》2019,93(6):1206-1208
Russian Journal of Physical Chemistry A - The Gibbs energies of solvation of 2,2'-dipyridyl (2,2'-Dipy) in methanol (MeOH), acetonitrile (AN), dimethylsulfoxide (DMSO), and... 相似文献
15.
Interrelation between the hydrogen bonding energy in cellulose, its solubility in aqueous and nonaqueous solvents is examined. Factors controlling the solubility and selection criteria for nonaqueous solvents for cellulose are analyzed. 相似文献
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Setareh Akbari Razieh Sanavi Khoshnood Elaheh Hatami 《Russian Journal of Physical Chemistry A, Focus on Chemistry》2017,91(13):2569-2577
Complexatio of the La3+ cation with 1,13-bis(8-quinolyl)-1,4,7,10,13-pentaoxatridecane(Kryptofix5) was studied in pure solvents acetonitrile (AN), methanol (MeOH), nitrobenzene (NB), tetrahydrofuran (THF), methyl acetate (MeOAC) and in various binary solvent mixtures of AN–MeOH, AN–NB, AN–THF, and AN–MeOAC systems at different temperatures using the conductometric method. The stoichiometry of the complex was found to be 1 : 1 (ML). In all cases, the variation of the log kf with composition of the solvent was non-linear. This behavior is probably due to a change in the structure of these binary mixed solvents as the composition of the medium is varied. The stability order of the complex in pure nonaqueous solvents at 25°C increases in the order: AN > THF > MeOAC > MeOH > NB. The values of thermodynamic data (ΔH c °,ΔS c °) formation of (Kryptofix5.La)3+ complex are definitely solvent dependent. 相似文献
18.
果糖-水混合溶液中多组分电解质热力学 总被引:2,自引:0,他引:2
恒定混合溶液总离子强度I=1.0000 mol•kg-1,改变果糖-水混合溶液中果糖的质量分数w=2.5%、5.0%和7.5%的条件下,应用电动势方法测定下列无液体接界电池(A)和(B)在278.15、283.15、288.15、293.15、298.15、303.15、308.15、313.15、318.15 K等9个温度下的电动势:
Pt, H2 (105 Pa)│HCl(m), C6H12O6(w), H2O(1-w)│AgCl-Ag (A)
Pt, H2 (105 Pa)│HCl(mA), NaCl(mB), C6H12O6(w), H2O(1-w)│AgCl-Ag (B)
根据测得电池的电动势,计算出混合溶剂中AgCl-Ag电极的标准电极电势和HCl的标准迁移吉布斯自由能、迁移熵和迁移焓; 求出四元混合溶液中HCl的活度系数γA.结果表明在溶液中总离子强度I保持恒定,HCl的活度系数服从Harned规则,进一步讨论了混合物中HCl的介质效应. 相似文献
19.
乙二醇和水混合溶剂多组分电解质热力学 总被引:4,自引:0,他引:4
在乙二醇和水混合溶剂中恒定乙二醇质量分数w=0.1的条件下,应用经典的电动势方法测定无液体接界电池的电动势:
Pt,H2 (105 Pa )│HCl (质量摩尔浓度m), C2H6O2 (w), H2O (1-w)│AgCl-Ag (A)
Pt,H2 (105 Pa )│HCl (mA), NaCl(mB), C2H6O2 (w), H2O (1-w)│AgCl-Ag (B)
根据测得电池(A)的电动势,确定混合溶剂中AgCl-Ag电极的标准电极电势,讨论了HCl的迁移性质.利用电池(B)的电动势,计算出HCl的活度系数γA.结果表明,在溶液中总离子强度保持恒定, HCl的活度系数服从Harned规则.在溶液组成恒定时, lgγA是温度倒数1/T的线性函数. 进一步讨论了混合物中HCl的相对偏摩尔焓和介质效应. 相似文献
20.
Giuseppe Di Silvestro Cui Ming Yuan Patrizia Romana Mussini 《Journal of solution chemistry》2004,33(8):923-940
In the Atom Transfer Radical Polymerization (ATRP) technique, the suggested polymerization scheme is pivoted by a metal complex acting as a redox catalyst able to coordinate with the incipient radicals. The development of an a priori criterion of choice of the best (complex + solvent) combination is one of the current topics in this field. In this context we performed polarographic investigations on copper complexes with multidentate amino ligands (TMEDA and Me6TREN, plus acetonitrile as a reference) in water and in water + acetonitrile mixed solvents. In the latter case we took into account the competition between the co-solvent acetonitrile [a weaker ligand, but concentrated, selectively stabilizing Cu(I)], and the polyamine [a stronger ligand, but diluted, preferentially stabilizing Cu(II)], achieving further stabilization of the complexed copper, with a narrow potential range of stability as Cu(I), which is modulated through the acetonitrile/polyamine ratio. An interpretative scheme is presented. 相似文献