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solvation
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thumb|260px|A sodium ion solvated by water molecules

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Solvation
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9 sections
Contents
  • Distinction from solubility
  • Solvents and intermolecular interactions
  • Solvation energy and thermodynamic considerations
  • Macromolecules and assemblies
  • Importance of solvation in computer simulations
  • See also
  • References
  • Further reading
  • External links

thumb|260px|A sodium ion solvated by water molecules

Solvations describes the interaction of a solvent with dissolved molecules. Both ionized and uncharged molecules interact strongly with a solvent, and the strength and nature of this interaction influence many properties of the solute, including solubility, reactivity, and color, as well as influencing the properties of the solvent such as its viscosity and density. If the attractive forces between the solvent and solute particles are greater than the attractive forces holding the solute particles together, the solvent particles pull the solute particles apart and surround them. The surrounded solute particles then move away from the solid solute and out into the solution. Ions are surrounded by a concentric shell of solvent. Solvation is the process of reorganizing solvent and solute molecules into solvation complexes and involves bond formation, hydrogen bonding, and van der Waals forces. Solvation of a solute by water is called hydration.

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