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  2. Imidazolate - Wikipedia

    en.wikipedia.org/wiki/Imidazolate

    2) is the conjugate base of imidazole. It is a nucleophile and a strong base. The free anion has C 2v symmetry. Imidazole has a pK a of 14.05, [1] so the deprotonation of imidazole (C 3 H 3 N 2 H) requires a strong base.

  3. Phenolates - Wikipedia

    en.wikipedia.org/wiki/Phenolates

    The phenoxide anion (aka phenolate) is a strong nucleophile with a comparable to the one of carbanions or tertiary amines. [3] Generally, oxygen attack of phenoxide anions is kinetically favored, while carbon-attack is thermodynamically preferred (see Thermodynamic versus kinetic reaction control). Mixed oxygen/carbon attack and by this a loss ...

  4. Acyl group - Wikipedia

    en.wikipedia.org/wiki/Acyl_group

    While nucleophilic acyl substitution reactions can be base-catalyzed, the reaction will not occur if the leaving group is a stronger base than the nucleophile (i.e. the leaving group must have a higher pK a than the nucleophile). Unlike acid-catalyzed processes, both the nucleophile and the leaving group exist as anions under basic conditions.

  5. n-Butyllithium - Wikipedia

    en.wikipedia.org/wiki/N-Butyllithium

    Butyllithium is a strong base (pK b ≈ -36), but it is also a powerful nucleophile and reductant, depending on the other reactants. Furthermore, in addition to being a strong nucleophile, n -BuLi binds to aprotic Lewis bases, such as ethers and tertiary amines , which partially disaggregate the clusters by binding to the lithium centers.

  6. Alkoxide - Wikipedia

    en.wikipedia.org/wiki/Alkoxide

    In chemistry, an alkoxide is the conjugate base of an alcohol and therefore consists of an organic group bonded to a negatively charged oxygen atom. They are written as RO −, where R is the organyl substituent. Alkoxides are strong bases [citation needed] and, when R is not bulky, good nucleophiles and good ligands.

  7. SN2 reaction - Wikipedia

    en.wikipedia.org/wiki/SN2_reaction

    tert-Butoxide, on the other hand, is a strong base, but a poor nucleophile, because of its three methyl groups hindering its approach to the carbon. Nucleophile strength is also affected by charge and electronegativity : nucleophilicity increases with increasing negative charge and decreasing electronegativity.

  8. Superbase - Wikipedia

    en.wikipedia.org/wiki/Superbase

    Organometallic compounds of electropositive metals are superbases, but they are generally strong nucleophiles. Examples include organolithium and organomagnesium ( Grignard reagent ) compounds. Another type of organometallic superbase has a reactive metal exchanged for a hydrogen on a heteroatom , such as oxygen (unstabilized alkoxides ) or ...

  9. Nucleophilic substitution - Wikipedia

    en.wikipedia.org/wiki/Nucleophilic_substitution

    In chemistry, a nucleophilic substitution (S N) is a class of chemical reactions in which an electron-rich chemical species (known as a nucleophile) replaces a functional group within another electron-deficient molecule (known as the electrophile).