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Water solvation

A possible explanation comes from X-ray analyses of the sulfonic acids [45]. All X-rayed crown ether crystals contained water and the sulfonic acid moiety was dissociated. Therefore in crystals of [45], macrocyclic ben-zenesulfonate anions and hydronium ions (sometimes hydrated) are present. The ions are bound to each other by hydrogen bonds. The size of the included water-hydronium ion cluster (varying by the number of solvating water molecules) depends on the ring size. In the 15-membered ring, HsO" was found, whereas in a 21-membered ring HsO and in the 27-membered ring were present. This means the sulfonic acid functions in [45] are... [Pg.96]

As described above, the electrolyte usually contains anions and cations, which are partially or fully solvated, water molecules and various species being involved in electrocatalytic reactions. The excess charge on the electrode surface is compensated by an accumulation of corresponding electrolyte counter-ions, leading to overall charge neutrality. [Pg.136]

Fig. 13 Results from the quantum calculations on the duplex sequence 5 -GAGG-3. In a, the sodium ions and their solvating water molecules are located at positions near the phosphate anions of the DNA backbone. In b, one sodium ion is moved from near a phosphate anion to N-7 of a guanine, which molecular dynamics calculations show to be a preferred site. The balloons represent the hole density on the GAGG sequences with the two different sodium ion orientations. The radical cation clearly changes its average location with movement of the sodium ion... Fig. 13 Results from the quantum calculations on the duplex sequence 5 -GAGG-3. In a, the sodium ions and their solvating water molecules are located at positions near the phosphate anions of the DNA backbone. In b, one sodium ion is moved from near a phosphate anion to N-7 of a guanine, which molecular dynamics calculations show to be a preferred site. The balloons represent the hole density on the GAGG sequences with the two different sodium ion orientations. The radical cation clearly changes its average location with movement of the sodium ion...
The structure of the BnH14 ion has not been established. A discussion of the spectral properties and the structural implications may be found in the original article by Aftandilian et al.6 Hydrolytically, BnHi4 is more stable than BH4. Salts of BuHir slowly oxidize in air, particularly if they are solvated (water or ether). [Pg.88]

During the migration of cations and anions towards their respective electrodes, each ion tends to carry solvated water along with it. As cations are usually more solvated than anions, a net flow of water towards the cathode occurs during the separation process. This effect, known as electro-osmosis, results in a movement of neutral species which would normally be expected to remain at the point of application of the sample. If required, a correction can be applied to the distances migrated by ionic species by measuring them... [Pg.172]

Using this method, the result cp = 0.69 (Gold, 1963 Kresge and Allred, 1963) was obtained for the fractionation factor of each of the three protons of The fractionation factors of the further solvating water molecules... [Pg.284]

In this section, we describe three simple cases of rates and mechanisms that have been found suitable for the interpretation of extraction kinetic processes in kinetic regimes. These simple cases deal with the exuaction reaction of a monovalent metal cation (solvation water molecules are omitted in the notation) with a weakly acidic solvent extraction reagent, BH. The overall extraction reaction is... [Pg.233]

Solvating water molecules dragged towards cathode by cations... [Pg.296]

The DNA solvation shell consists of about 20-22 water molecules per nucleotide of these, — 15-17 waters associate with the nucleoside and —5 waters associate with the phosphate group [13,14]. Water outside the solvation layer is termed bulk water. Upon freezing, the DNA solvation water forms two primary phases the ice phase, consisting of one or more of the crystalline forms of ice, and a DNA-associated phase, consisting of ordered water which comes in direct contact with the DNA (primary layer) and disordered water in the secondary layer. DNA hydration is expressed in terms of F, the number of water molecules per nucleotide. [Pg.435]

Fig. 1. Construction of a computational model for TauD. (A) the solvated TauD enzyme (PDB code 1GY9, solvating water molecules in red) (B) the desolvated enzyme (C) the active site with the substrate and a-ketoglutarate bound to the iron centre, and the most important amino acids in the first and second coordination sphere (D) a minimal model for TauD including only the first coordination sphere and the substrate. Fig. 1. Construction of a computational model for TauD. (A) the solvated TauD enzyme (PDB code 1GY9, solvating water molecules in red) (B) the desolvated enzyme (C) the active site with the substrate and a-ketoglutarate bound to the iron centre, and the most important amino acids in the first and second coordination sphere (D) a minimal model for TauD including only the first coordination sphere and the substrate.
Above Illustrating adsorption of typical non-ionic disperse dye by cellulose triacetate. Below (Schematic) Illustrating loss of affinity of polar groups by screening effect of solvated water on ionic group, in a typical sulphate-ester dye. [Pg.457]


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See also in sourсe #XX -- [ Pg.162 , Pg.163 ]




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Aqueous-phase solvation water adsorption

Aqueous-phase solvation water dissociation

General relations between solvation thermodynamics and the structure of water

Influence of Water Solvation

Ion solvation in water

NMR Studies of Ion Solvation in Water

Solvated water molecules

Solvation dynamics in water

Solvation energy of water

Solvation function water

Solvation in water

Solvation of hard rods in the primitive model for water

Solvation of water

Solvation protonated hydrates, water molecule

Solvation shell water molecules

Solvation water layer

Solvation water relaxation

Solvation, by water

Water Molecule Rearrangement in Solvation Shell Assembly

Water solvation energies

Water solvation shell

Water-DMSO mixtures preferential solvation

Water-DMSO mixtures solvation

Water-ethanol mixtures preferential solvation

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