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  2. Pyrrole - Wikipedia

    en.wikipedia.org/wiki/Pyrrole

    The Knorr pyrrole synthesis involves the reaction of an α-amino ketone or an α-amino-β-ketoester with an activated methylene compound. [15] [16] [17] The method involves the reaction of an α-amino ketone (1) and a compound containing a methylene group α to (bonded to the next carbon to) a carbonyl group (2). [18] The Knorr pyrrole synthesis

  3. N-Bromosuccinimide - Wikipedia

    en.wikipedia.org/wiki/N-Bromosuccinimide

    NBS is commercially available. It can also be synthesized in the laboratory. To do so, sodium hydroxide and bromine are added to an ice-water solution of succinimide. The NBS product precipitates and can be collected by filtration. [1] Crude NBS gives better yield in the Wohl–Ziegler reaction. In other cases, impure NBS (slightly yellow in ...

  4. Succinimide - Wikipedia

    en.wikipedia.org/wiki/Succinimide

    Succinimide is an organic compound with the formula (CH 2) 2 (CO) 2 NH. This white solid is used in a variety of organic syntheses, as well as in some industrial silver plating processes. The compound is classified as a cyclic imide. It may be prepared by thermal decomposition of ammonium succinate. [4]

  5. Hantzsch pyrrole synthesis - Wikipedia

    en.wikipedia.org/wiki/Hantzsch_pyrrole_synthesis

    The Hantzsch Pyrrole Synthesis, named for Arthur Rudolf Hantzsch, is the chemical reaction of β-ketoesters (1) with ammonia (or primary amines) and α-haloketones (2) to give substituted pyrroles (3).

  6. Paal–Knorr synthesis - Wikipedia

    en.wikipedia.org/wiki/Paal–Knorr_synthesis

    In organic chemistry, the Paal–Knorr synthesis is a reaction used to synthesize substituted furans, pyrroles, or thiophenes from 1,4-diketones.It is a synthetically valuable method for obtaining substituted furans and pyrroles, which are common structural components of many natural products.

  7. Rothemund reaction - Wikipedia

    en.wikipedia.org/wiki/Rothemund_reaction

    [3] [4] This has inspired the work of his student Paul Rothemund to develop a simple one pot synthesis of porphyrins. In 1935, Paul Rothemund reported the formation of porphyrin, from a simple reaction of pyrrole with gaseous acetaldehyde or formaldehyde in methanol followed by treatment with various concentrations of hydrochloric acid. [5]

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  9. N-Chlorosuccinimide - Wikipedia

    en.wikipedia.org/wiki/N-Chlorosuccinimide

    NCS is produced from succinimide by treatment with Cl + sources, such as sodium hypochlorite (bleach), and t-butylhypochlorite, and even chlorine. [2] Electron-rich arenes are readily monochlorinated by NCS. Aniline and mesitylene are converted to the respective chlorinated derivatives. [2]