Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2019 Mar 15;84(6):3249-3259.
doi: 10.1021/acs.joc.8b03162. Epub 2019 Feb 27.

A 5 + 1 Protic Acid Assisted Aza-Pummerer Approach for Synthesis of 4-Chloropiperidines from Homoallylic Amines

Affiliations

A 5 + 1 Protic Acid Assisted Aza-Pummerer Approach for Synthesis of 4-Chloropiperidines from Homoallylic Amines

Rene Ebule et al. J Org Chem. .

Abstract

We report that HCl·DMPU induces the formation of (thiomethyl)methyl carbenium ion from DMSO under mild conditions. Homoallylic amines react with this electrophile to generate 4-chloropiperidines in good yields. The method applies to both aromatic and aliphatic amines. The use of HCl·DMPU as both non-nucleophilic base and chloride source constitutes an environmentally benign alternative for piperidine formation. The reaction has a broad substrate scope, and the conditions offer good chemical yields with high functional group tolerance and scalability.

PubMed Disclaimer

Conflict of interest statement

Notes

The authors declare no competing financial interests.

Figures

Figure 1
Figure 1
Examples of piperidine-containing natural products and drug molecules.
Figure 2
Figure 2
Failed substrates.
Figure 3
Figure 3
ORTEP representation of (2n) with thermal ellipsoids shown at the 50% probability level.
Scheme 1
Scheme 1
Literature background.
Scheme 2
Scheme 2
Gram scale reaction and mechanistic study.
Scheme 3
Scheme 3
Proposed mechanism.

Similar articles

Cited by

References

    1. François ‐Xavier F; Jacques L Recent Advances in the Total Synthesis of Piperidine and Pyrrolidine Natural Alkaloids with Ring ‐ Closing Metathesis as a Key Step. Eur. J. Org. Chem 2003, 2003, 3693–3712;
    2. Carmen E; Mercedes A; Joan B Chiral Oxazolopiperidone Lactams: Versatile Intermediates for the Enantioselective Synthesis of Piperidine ‐ Containing Natural Products. Chem. Eur. J 2006, 12, 8198–8207. - PubMed
    1. Baumann M; Baxendale IR An overview of the synthetic routes to the best selling drugs containing 6-membered heterocycles. Beilstein J. Org. Chem 2013, 9, 2265–2319; - PMC - PubMed
    2. Taylor RD; MacCoss M; Lawson ADG Rings in Drugs. J. Med. Chem 2014, 57, 5845–5859; - PubMed
    3. Vitaku E; Smith DT; Njardarson JT Analysis of the Structural Diversity, Substitution Patterns, and Frequency of Nitrogen Heterocycles among U.S. FDA Approved Pharmaceuticals. J. Med. Chem 2014, 57, 10257–10274; - PubMed
    4. Zhang TY, Chapter One - The Evolving Landscape of Heterocycles in Drugs and Drug Candidates. In Adv. Heterocycl. Chem, Scriven EFV; Ramsden CA, Eds. Academic Press: 2017; Vol. 121, pp 1–12;
    5. Ye Z; Adhikari S; Xia Y; Dai M Expedient syntheses of N-heterocycles via intermolecular amphoteric diamination of allenes. Nat. Commun 2018, 9, 721; - PMC - PubMed
    6. Pethe K; Bifani P; Jang J; Kang S; Park S; Ahn S; Jiricek J; Jung J; Jeon HK; Cechetto J; Christophe T; Lee H; Kempf M; Jackson M; Lenaerts AJ; Pham H; Jones V; Seo MJ; Kim YM; Seo M; Seo JJ; Park D; Ko Y; Choi I; Kim R; Kim SY; Lim S; Yim S-A; Nam J; Kang H; Kwon H; Oh C-T; Cho Y; Jang Y; Kim J; Chua A; Tan BH; Nanjundappa MB; Rao SPS; Barnes WS; Wintjens R; Walker JR; Alonso S; Lee S; Kim J; Oh S; Oh T; Nehrbass U; Han S-J; No Z; Lee J; Brodin P; Cho S-N; Nam K; Kim J Discovery of Q203, a potent clinical candidate for the treatment of tuberculosis. Nat. Med 2013, 19, 1157–1160. - PubMed
    1. Julian LD; Hartwig JF Intramolecular Hydroamination of Unbiased and Functionalized Primary Aminoalkenes Catalyzed by a Rhodium Aminophosphine Complex. J. Am. Chem. Soc 2010, 132, 13813–13822; - PMC - PubMed
    2. Takemiya A; Hartwig JF Rhodium-Catalyzed Intramolecular, Anti-Markovnikov Hydroamination. Synthesis of 3-Arylpiperidines. J. Am. Chem. Soc 2006, 128, 6042–6043; - PubMed
    3. Fujita K.-i.; Fujii T; Yamaguchi R Cp*Ir Complex-Catalyzed N-Heterocyclization of Primary Amines with Diols: A New Catalytic System for Environmentally Benign Synthesis of Cyclic Amines. Org. Lett 2004, 6, 3525–3528. - PubMed
    1. Qi X; Chen C; Hou C; Fu L; Chen P; Liu G Enantioselective Pd(II)-Catalyzed Intramolecular Oxidative 6-endo Aminoacetoxylation of Unactivated Alkenes. J. Am. Chem. Soc 2018, 140, 7415–7419; - PubMed
    2. Ortiz GX; Kang B; Wang Q One-Pot Synthesis of 3-Azido- and 3-Aminopiperidines by Intramolecular Cyclization of Unsaturated Amines. J. Org. Chem 2014, 79, 571–581. - PubMed
    1. Liu G-Q; Cui B; Xu R; Li Y-M Preparation of trans-2-Substituted-4-halopiperidines and cis-2-Substituted-4-halotetrahydropyrans via AlCl3-Catalyzed Prins Reaction. J. Org. Chem 2016, 81, 5144–5161; - PubMed
    2. Nebe MM; Opatz T, Chapter Five - Synthesis of Piperidines and Dehydropiperidines: Construction of the Six-Membered Ring. In Adv. Heterocycl. Chem, Scriven EFV; Ramsden CA, Eds. Academic Press: 2017; Vol. 122, pp 191–244.

Publication types