4.7 Article

Different Modes of Acid-Promoted Cyclooligomerization of 4-(4-Thiosemicarbazido)butan-2-one Hydrazone: 14-Membered versus 28-Membered Polyazamacrocycle Formation

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JOURNAL OF ORGANIC CHEMISTRY
卷 87, 期 23, 页码 15722-15731

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AMER CHEMICAL SOC
DOI: 10.1021/acs.joc.2c01199

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资金

  1. Russian Foundation for Basic Research
  2. Austrian Science Fund
  3. [20-53-14002]
  4. [I4729]

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The unprecedented self-assembly of novel 14-membered cyclic bis-thiosemicarbazone or/and 28-membered cyclic tetrakis-thiosemicarbazone upon acid-promoted cyclooligomerization of 4-(4-thiosemicarbazido)butan-2-one hydrazone has been discovered. By studying the influence of various factors, the optimal conditions for the highly selective formation of each macrocycle have been determined, leading to excellent yields. Plausible pathways for macrocyclizations have been discussed. The macrocycle precursor was prepared by the reaction of readily available 4-isothiocyanatobutan-2-one with an excess of hydrazine.
Unprecedented self-assembly of a novel 14-mem-bered cyclic bis-thiosemicarbazone or/and a 28-membered cyclic tetrakis-thiosemicarbazone upon acid-promoted cyclooligomeriza-tion of 4-(4-thiosemicarbazido)butan-2-one hydrazone has been discovered. A thorough study of the influence of various factors on the direction of macrocyclization provided the optimal conditions for the highly selective formation of each of the macrocycles in excellent yields. Plausible pathways for macrocyclizations have been discussed. The macrocycle precursor was prepared by the reaction of readily available 4-isothiocyanatobutan-2-one with an excess of hydrazine.

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