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The reaction is influenced by the basicity of the solvent.
Second generation proton sponges are known with even higher basicity.
In general, 'the weaker the basicity of a group, the greater its leaving ability'.
One of the most characteristic properties of ammonia is its basicity.
This measure of basicity is known as the Gutmann donor number.
The basicity of His-48 is thought to be enhanced through hydrogen bonding with Asp-99.
Electron lone pair availability (basicity) is decreased compared to pyridine.
However, not all cerium purification methods relied on basicity.
The soil pH is a measure of the acidity or basicity in soils.
Either of these functions could explain the increased basicity, but further experimentation is needed to pinpoint the exact mechanism.
Basicity is not the same as alkalinity.
These effects also decrease the basicity.
The strength of a strong acid is limited ("leveled") by the basicity of the solvent.
This hydrolysis occurs because of the extreme basicity of the Se ion.
Alkalinity is sometimes incorrectly used interchangeably with basicity.
This will reduce the basicity; however, the alkalinity will remain unchanged (see example below).
The inductive effect also plays a vital role in deciding the acidity and basicity of a molecule.
However, there is no strict trend in this regard, as basicity is also governed by other factors mentioned above.
The bonding mode depends on the electrophilicity and basicity of the metal centre.
They derive their name from the alkali metal group of elements to which the sodium belongs and that can induce basicity.
The basicity of ammonia also is the basis of its toxicity and its use as a cleaner.
The 'base dissociation constant' or 'Kb' is a measure of basicity.
In this case, nucleophilicity mirrors basicity.
This lone pair is responsible for the basicity of these nitrogenous bases, similar to the nitrogen atom in amines.
Therefore, the overall rate of reaction is controlled by carboxylate basicity and solvation.