Most organic molecules retain their integrity when dissolved, and even though in such cases the effects exerted by solvents are, in the language of the coordination chemist, of the "outer sphere" kind, the choice of solvent can be critical to the successful outcome of an operation or preparation. Solubilities of reactants and products must be taken into account, and even if the organic principals in the reactions retain their integrity, many of the reagents are electrolytes, and their state of aggregation will affect their reactivity. In testifying to the importance of understanding solute-solvent interactions I draw attention to a large class of inorganic species for which the involvement in the chemical and physical properties by the solvent is even more deeply seated. It is comprised by the large body of metal atoms in low oxidation states for which solvent molecules intervene as reagents. At the same time, because the ions carry charges, the effects arising from outer sphere interactions are usually greater than they are for neutral molecules. To cite an example: when FeCb(s) is dissolved in water to form a dilute - say O. OlO- solution there is a complete reorganization of the coordination sphere of the cation. Whereas in the solid each cation is surrounded by six chloride ions, in the solution the dominant form is [Fe(H20)6]3+ followed by [Fe(H20)sCI]2+, [Fe(H20)4CI2]+, etc. in rapidly decreasing abundance.
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• Ionic Solvation in Aqueous and Nonaqueous Solutions (H. Ohtaki) • Spin Equilibrium in Solutions (H. Toftlund) • Thermochromism and Solvatochromism in Solution (U. El-Ayaan, F. Murata, Y. Fukuda) • Recent Advances in the Description of the Structure of Water, the Hydrophobic Effect, and the Like-Dissolves-Like Rule (R. Schmid) • Thermodynamic Investigation of Phase Equilibria in Metal Carbonate-Water-Carbon Dioxide Systems (W. Preis, H. Gamsjäger) • The Solvent-Like Nature of Silica Particles in Organic Solvents (Y. Zimmermann, M. El-Sayed, S. Prause, S. Spange) • Prediction of Electrolyte Solubilities from Minimal Thermodynamic Information (E. Königsberger) • Preferential Solvation in Mixed Solvents X. Completely Miscible Aqueous Co-Solvent Binary Mixtures at 298.15 K (Y. Marcus) • Phase Transitions and Critical Behaviour of Binary Liquid Mixtures (G. Kahl, E. Schöll-Paschinger, A. Lang) • Extraction of Unprotected Amino Acids by Mixed-Ligand Nickel(II) and Copper(II) Chelates (Y. Ihara, S. Kurose, T. Koyama) • Solvent Effects on Ion-Pair Distribution and Dimerization of Tetraalkylammonium Salts (K. Sawada, E. Takahashi, T. Horie, K, Satoh)
Book by Linert Wolfgang Taube H
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Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Most organic molecules retain their integrity when dissolved, and even though in such cases the effects exerted by solvents are, in the language of the coordination chemist, of the 'outer sphere' kind, the choice of solvent can be critical to the successful outcome of an operation or preparation. Solubilities of reactants and products must be taken into account, and even if the organic principals in the reactions retain their integrity, many of the reagents are electrolytes, and their state of aggregation will affect their reactivity. In testifying to the importance of understanding solute-solvent interactions I draw attention to a large class of inorganic species for which the involvement in the chemical and physical properties by the solvent is even more deeply seated. It is comprised by the large body of metal atoms in low oxidation states for which solvent molecules intervene as reagents. At the same time, because the ions carry charges, the effects arising from outer sphere interactions are usually greater than they are for neutral molecules. To cite an example: when FeCb(s) is dissolved in water to form a dilute - say O. OlO- solution there is a complete reorganization of the coordination sphere of the cation. Whereas in the solid each cation is surrounded by six chloride ions, in the solution the dominant form is [Fe(H20)6]3+ followed by [Fe(H20)sCI]2+, [Fe(H20)4CI2]+, etc. in rapidly decreasing abundance. 236 pp. Englisch. Codice articolo 9783211837313
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Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Most organic molecules retain their integrity when dissolved, and even though in such cases the effects exerted by solvents are, in the language of the coordination chemist, of the outer sphere kind, the choice of solvent can be critical to the successful. Codice articolo 4489214
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Condizione: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher | Most organic molecules retain their integrity when dissolved, and even though in such cases the effects exerted by solvents are, in the language of the coordination chemist, of the "outer sphere" kind, the choice of solvent can be critical to the successful outcome of an operation or preparation. Solubilities of reactants and products must be taken into account, and even if the organic principals in the reactions retain their integrity, many of the reagents are electrolytes, and their state of aggregation will affect their reactivity. In testifying to the importance of understanding solute-solvent interactions I draw attention to a large class of inorganic species for which the involvement in the chemical and physical properties by the solvent is even more deeply seated. It is comprised by the large body of metal atoms in low oxidation states for which solvent molecules intervene as reagents. At the same time, because the ions carry charges, the effects arising from outer sphere interactions are usually greater than they are for neutral molecules. To cite an example: when FeCb(s) is dissolved in water to form a dilute - say O. OlO- solution there is a complete reorganization of the coordination sphere of the cation. Whereas in the solid each cation is surrounded by six chloride ions, in the solution the dominant form is [Fe(H20)6]3+ followed by [Fe(H20)sCI]2+, [Fe(H20)4CI2]+, etc. in rapidly decreasing abundance. Codice articolo 951898/2
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Buch. Condizione: Neu. Highlights in Solute-Solvent Interactions | Wolfgang Linert | Buch | Englisch | 2001 | Springer Vienna | EAN 9783211837313 | Verantwortliche Person für die EU: Springer Wien, Prinz-Eugen-Str. 8-10, 1040 WIEN, ÖSTERREICH, buchhandel-buch[at]springer[dot]com | Anbieter: preigu Print on Demand. Codice articolo 104203597
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