N-Methyl-4-piperidone can be used as a reactant to prepare:
Spiropiperidine rings by reacting with malononitrile and electrophiles or Michael acceptors.[1]
(3E,5E)-1-Methyl-3,5-bis(phenylmethylene)-4-piperidinone by reacting with benzaldehyde via Michael addition, followed by intramolecular O-cyclization/elimination sequential reactions.[2]
N,N′-Dimethylbispidinone by utilizing a double Mannich condensation method.[3]
Analogs of sparteine. I. Reexamination of the reaction of N-methyl-4-piperidone with formaldehyde and methylamine. Revised synthesis of N, N'-dimethylbispidinone
Smissman EE, et al.
The Journal of Organic Chemistry, 40, 251-252 (1975)
Analogs of sparteine. I. A reexamination of the reaction of n-methyl-4-piperidone with formaldehyde and methylamine. A revised synthesis of n,n'-dimethylbispidinone.
E E Smissman et al.
The Journal of organic chemistry, 40(2), 251-252 (1975-01-24)
A facile tandem Michael addition/O-cyclization/elimination route to novel chromeno [3, 2-c] pyridines
Sumesh RV, et al.
Molecular Diversity, 19, 233-249 (2015)
Novel route to spiropiperidines using N-methyl-4-piperidone, malononitrile and electrophiles
European journal of medicinal chemistry, 167, 187-199 (2019-02-17)
To get new anti-hepatoma agents with anti-inflammatory activity and hypotoxicity, a series of dissymmetric pyridyl-substituted 3,5-bis(arylidene)-4-piperidones (BAPs, 25-82) were designed and synthesized. Many of them exhibited potential anti-hepatoma properties against human hepatocellular carcinoma cell lines (HepG2, QGY-7703, SMMC-7721) and hypotoxicity
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