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  2. Kröhnke pyridine synthesis - Wikipedia

    en.wikipedia.org/wiki/Kröhnke_pyridine_synthesis

    The Kröhnke method in this synthesis was crucial due to the failure of other cyclization techniques such as the Glaser coupling or Ullmann coupling. Figure 13. Another use of the Kröhnke pyridine synthesis was the generation of a number of 2,4,6-trisubstituted pyridines that were investigated as potential topoisomerase 1 inhibitors.

  3. Pyridine - Wikipedia

    en.wikipedia.org/wiki/Pyridine

    The Kröhnke pyridine synthesis provides a fairly general method for generating substituted pyridines using pyridine itself as a reagent which does not become incorporated into the final product. The reaction of pyridine with bromomethyl ketones gives the related pyridinium salt, wherein the methylene group is highly acidic.

  4. Chichibabin pyridine synthesis - Wikipedia

    en.wikipedia.org/wiki/Chichibabin_pyridine_synthesis

    The Chichibabin pyridine synthesis (/ ˈ tʃ iː tʃ iː ˌ b eɪ b iː n /) is a method for synthesizing pyridine rings. The reaction involves the condensation reaction of aldehydes, ketones, α,β-Unsaturated carbonyl compounds, or any combination of the above, with ammonia. [1] It was reported by Aleksei Chichibabin in 1924.

  5. Hantzsch pyridine synthesis - Wikipedia

    en.wikipedia.org/wiki/Hantzsch_pyridine_synthesis

    Upon metabolism, 1,4-DHP based antihypertensive drugs undergo oxidation by way of cytochrome P-450 in the liver and are thus converted to their pyridine derivatives. [11] As a result, particular attention has been paid to the aromatization of 1,4-DHPs as a means to understand biological systems and so as to develop new methods of accessing ...

  6. Methylpyridinium - Wikipedia

    en.wikipedia.org/wiki/Methylpyridinium

    Methylpyridinium is prepared by treating pyridine with dimethylsulfate: [2]. C 5 H 5 N + (CH 3 O) 2 SO 2 → [C 5 H 5 NCH 3] + CH 3 OSO − 3. It is found in some coffee products. [3] It is not present in unroasted coffee beans, but is formed during roasting from its precursor chemical, trigonelline. [3]

  7. Pyridinium - Wikipedia

    en.wikipedia.org/wiki/Pyridinium

    It is the conjugate acid of pyridine. Many related cations are known involving substituted pyridines, e.g. picolines, lutidines, collidines. They are prepared by treating pyridine with acids. [3] As pyridine is often used as an organic base in chemical reactions, pyridinium salts are produced in many acid-base reactions.

  8. 2,6-Pyridinedicarbothioic acid - Wikipedia

    en.wikipedia.org/wiki/2,6-Pyridinedicarbothioic_acid

    PDTC can be synthesized in the laboratory by treating the diacid dichloride of pyridine-2,6-dicarboxylic with H 2 S in pyridine: NC 5 H 3 (COCl) 2 + 2 H 2 S + 2 C 5 H 5 N → [C 5 H 5 NH +][HNC 5 H 3 (COS) − 2] + [C 5 H 5 NH]Cl. This route produces the pyridinium salt of pyridinium-2,6-dicarbothioate.

  9. Pyridinium p-toluenesulfonate - Wikipedia

    en.wikipedia.org/wiki/Pyridinium_p-toluenesulfonate

    In organic synthesis, PPTS is used as a weakly acidic catalyst, providing an organic soluble source of pyridinium (C 5 H 5 NH +) ions.For example, PPTS is used to deprotect silyl ethers or tetrahydropyranyl ethers when a substrate is unstable to stronger acid catalysts.