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  2. Pyrrole - Wikipedia

    en.wikipedia.org/wiki/Pyrrole

    Pyrrole is an extremely weak base for an amine, with a conjugate acid pK a of −3.8. The most thermodynamically stable pyrrolium cation (C 4 H 6 N +) is formed by protonation at the 2 position. Substitution of pyrrole with alkyl substituents provides a more basic molecule—for example, tetramethylpyrrole has a conjugate acid pK a of +3.7.

  3. Paal–Knorr synthesis - Wikipedia

    en.wikipedia.org/wiki/Paal–Knorr_synthesis

    The amine attacks the other carbonyl to form a 2,5-dihydroxytetrahydropyrrole derivative which undergoes dehydration to give the corresponding substituted pyrrole. [7] Paal–Knorr pyrrole synthesis mechanism. The reaction is typically run under protic or Lewis acidic conditions, with a primary amine.

  4. Hantzsch pyrrole synthesis - Wikipedia

    en.wikipedia.org/wiki/Hantzsch_pyrrole_synthesis

    A library of substituted pyrrole analogs can be quickly produced by using continuous flow chemistry (reaction times of around 8 min.). [10] The advantage of using this method, as opposed to the in-flask synthesis, is that this one does not require the work-up and purification of several intermediates, and could therefore lead to a higher ...

  5. Knorr pyrrole synthesis - Wikipedia

    en.wikipedia.org/wiki/Knorr_pyrrole_synthesis

    The Knorr pyrrole synthesis is a widely used chemical reaction that synthesizes substituted pyrroles (3). [ 1 ] [ 2 ] [ 3 ] The method involves the reaction of an α- amino - ketone (1) and a compound containing an electron-withdrawing group (e.g. an ester as shown) α to a carbonyl group (2) .

  6. Trofimov Reaction - Wikipedia

    en.wikipedia.org/wiki/Trofimov_Reaction

    The condensation reaction can be shown below: After the condensation, the pyrrole formation can proceed as normal. The Trofimov reaction can produce both N-H and N-vinyl pyrroles depending on the reaction conditions used. The N-vinyl pyrrole can be formed by the deprotonation of the pyrrole nitrogen which then attacks a second acetylene molecule.

  7. Interfacial polymerization - Wikipedia

    en.wikipedia.org/wiki/Interfacial_polymerization

    Compared to previous methods of capsule synthesis, interfacial polymerization is an easily modified synthesis that results in capsules with a wide range of properties and functionalities. [ 1 ] [ 2 ] Once synthesized, the capsules can enclose drugs, [ 6 ] quantum dots , [ 1 ] and other nanoparticles, to list a few examples.

  8. Schmidt reaction - Wikipedia

    en.wikipedia.org/wiki/Schmidt_reaction

    Reaction mechanism for the amine formation from a carboxylic acid via Schmidt reaction. In the reaction mechanism for the Schmidt reaction of ketones, the carbonyl group is activated by protonation for nucleophilic addition by the azide, forming azidohydrin 3, which loses water in an elimination reaction to diazoiminium 5.

  9. Ammonolysis - Wikipedia

    en.wikipedia.org/wiki/Ammonolysis

    The reaction between a ketone and ammonia results in an imine and byproduct water. This reaction is water sensitive and thus drying agents such as aluminum chloride or a Dean–Stark apparatus must be employed to remove water. The resulting imine will react and decompose back into the ketone and the ammonia when in the presence of water.

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