4.7 Article

Tracking the Progress and Mechanism Study of a Solvothermal in Situ Domino N-Alkylation Reaction of Triethylamine and Ammonia Assisted by Ferrous Sulfate

Journal

INORGANIC CHEMISTRY
Volume 56, Issue 17, Pages 10123-10126

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.7b01190

Keywords

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Funding

  1. National Science Foundation of China for Distinguished Young Scholars [21525101]
  2. NSFC [91422302, 21371037]
  3. NSFGX [2014GXNSFFA118003, CMEMR2014-A02]
  4. BAGUI scholar program [2014A001]
  5. CNRS, France

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Atom economic in situ domino N-alkylation reactions of triethylamine/ammonia with 2-(hydroxymethyl)quinolin-8-ol (HL-OH) assisted by FeSO4 center dot 7H(2)O were realized under mild solvothermal conditions at 120 degrees C in acetonitrile. The resulting tripodal 2,2',2 ''-[nitrilotris (methylene)] tris(quinolin-8-ol) (H3L3-N) forms a linear trimer [Fe-3(L-3-N)(2)] (1). Electrospray ionization mass spectrometry of the reaction solution provides evidence for the intermediates of three steps, while crystallography and X-ray photoelectron spectroscopy characterize the trimer. Shortening the time of the reaction allowed for the organic intermediates to be isolated, which led to a proposed mechanism. The method provides a facile way to produce symmetric tertiary amine from widely used NEt3 and NH3. The results represent an example of the in situ Fe2+-catalyzed domino reaction in which Fe2+ is coordinated by the generated ligands and is involved in each step until the final cluster 1.

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