Examples of 'substitution reactions' in a sentence
Meaning of "substitution reactions"
substitution reactions: Chemical reactions where atoms or groups of atoms in a molecule are replaced by different atoms or groups of atoms, resulting in the formation of new compounds
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- plural of substitution reaction
How to use "substitution reactions" in a sentence
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substitution reactions
Substitution reactions are of prime importance in organic chemistry.
Acetals are products of substitution reactions catalyzed by acid.
Mesylate is considered a leaving group in nucleophilic substitution reactions.
Aliphatic electrophilic substitution reactions are also useful.
Redox occurs in single displacement reactions or substitution reactions.
Such substitution reactions are generally known.
The same applies to the substitution reactions.
The substitution reactions proceed with inversion of sulfur configuration.
The simple and double substitution reactions.
Substitution reactions with electrophiles.
Organic compounds are brominated by either addition or substitution reactions.
Such substitution reactions by salt elimination are known in the art.
A dissociative mechanism is proposed for the substitution reactions.
Nucleophilic substitution reactions.
This is followed by a detailed look at aromatic substitution reactions.
See also
Electrophilic aromatic substitution reactions using diazonium salts are well known.
Many other more specialized mechanisms describe substitution reactions.
Examples of nucleophilic substitution reactions involved in one or more molecule synthesis steps.
His main research focus was electron transfer substitution reactions.
Aromatic nudeophilic substitution reactions may also be used in the present invention.
Polysubstituted benzenes were originally synthesized by substitution reactions on aromatic precursors.
Nucleophilic substitution reactions between halocarbons or organosulfates with silver or alkali nitrite salts.
Chlorination is one of the oldest known substitution reactions in chemistry.
Substitution reactions are preferred in the production of allyl chloride from propylene and chlorine.
Formation of the activated form desired is typically by substitution reactions.
Ninhydrin may undergo aromatic nucleophilic substitution reactions to provide substituted ninhydrin compounds.
It is desirable for the group to be reactive in electrophilic aromatic substitution reactions.
They undergo nucleophilic addition and substitution reactions with various electrophiles.
Substituted benzaldehydes are commercially available or may be synthesised using known substitution reactions.
Substitution reactions are useful for the coupling of a heterocycle with a phosphonate diester component.
Amine groups are also expected to facilitate other substitution reactions.
Aspects of nucleophilic substitution reactions and nucleophilic terminated macromonomers have been mentioned previously.
These starches can subsequently be subjected to substitution reactions as defined above.
Many nucleophilic acyl substitution reactions involve converting one acyl derivative into another.
Other synthetic routes such as transesterification or nucleophilic substitution reactions can be used.
Nucleophilic acyl substitution reactions that do not involve interconversion between acyl derivatives are also possible.
Leaving groups are groups which can easily be cleaved in nucleophilic substitution reactions.
The benzylic halogen functionality will undergo clean substitution reactions without complicating elimination reactions.
The catalysts of the present invention are especially effective when employed in allylic substitution reactions.
These monomers are conventionally produced by nucleophilic substitution reactions between amines and halogenated compounds.
The alcohol group is a strongly basic leaving group that cannot undergo nucleophilic substitution reactions.
Instead, substitution reactions are preferred.
The relation of this result to possible mechanisms of nucleophilic alkene substitution reactions is discussed.
For example, substitution reactions can include radical substitions.
These EDA complexes may be considered intermediates in aromatic nucleophilic substitution reactions.
For instance, some substitution reactions follow an addition-elimination pathway.
Azide derivatives are easily prepared vía nucleophilic substitution reactions V.
Electrophilic aromatic substitution reactions are enhanced by the presence of such electron-donating substituents.
X and Y may themselves react further after the initial substitution reactions.
Phosphorine undergoes electrophilic substitution reactions like ordinary aromatic compounds, bromination, acylation, and so on.
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