Literature DB >> 29533620

Ozone-Free Synthesis of Ozonides: Assembling Bicyclic Structures from 1,5-Diketones and Hydrogen Peroxide.

Ivan A Yaremenko1,2,3, Gabriel Dos Passos Gomes4, Peter S Radulov1,3, Yulia Yu Belyakova1,2, Anatoliy E Vilikotskiy1,2, Vera A Vil'1,2,3, Alexander A Korlyukov5,6, Gennady I Nikishin1, Igor V Alabugin4, Alexander O Terent'ev1,2,3.   

Abstract

Reactions of 1,5-diketones with H2O2 open an ozone-free approach to ozonides. Bridged ozonides are formed readily at room temperature in the presence of strong Brønsted or Lewis acids such as H2SO4, p-TsOH, HBF4, or BF3·Et2O. The expected bridged tetraoxanes, the products of double H2O2 addition, were not detected. This procedure is readily scalable to produce gram quantities of the ozonides. Bridged ozonides are stable and can be useful as building blocks for bioconjugation and further synthetic transformations. Although less stabilized by anomeric interactions than bis-peroxides, ozonides have an intrinsic advantage of having only one weak O-O bond. The role of the synergetic framework of anomeric effects in bis-peroxides is to overcome this intrinsic disadvantage. As the computational data have shown, this is only possible when all anomeric effects in bis-peroxides are activated to their fullest degree. Consequently, the cyclization selectivity is determined by the length of the bridge between the two carbonyl groups of the diketone. The generally large thermodynamic preference for the formation of cyclic bis-peroxides disappears when 1,5-diketones are used as the bis-cyclization precursors. Stereoelectronic analysis suggests that the reason for the bis-peroxide absence is the selective deactivation of anomeric effects in a [3.2.2]tetraoxanonane skeleton by a structural distortion imposed on the tetraoxacyclohexane subunit by the three-carbon bridge.

Entities:  

Year:  2018        PMID: 29533620     DOI: 10.1021/acs.joc.8b00130

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  3 in total

1.  Application of BF3·Et2O in the synthesis of cyclic organic peroxides (microreview).

Authors:  Peter S Radulov; Ivan A Yaremenko
Journal:  Chem Heterocycl Compd (N Y)       Date:  2020-10-17       Impact factor: 1.277

Review 2.  Lewis Acids and Heteropoly Acids in the Synthesis of Organic Peroxides.

Authors:  Ivan A Yaremenko; Peter S Radulov; Yulia Yu Belyakova; Dmitriy I Fomenkov; Svetlana B Tsogoeva; Alexander O Terent'ev
Journal:  Pharmaceuticals (Basel)       Date:  2022-04-13

3.  Hydrogen peroxide-mediated synthesis of 2,4-substituted quinazolines via one-pot three-component reactions under metal-free conditions.

Authors:  Khang H Trinh; Khang X Nguyen; Phuc H Pham; Tung T Nguyen; Anh N Q Phan; Nam T S Phan
Journal:  RSC Adv       Date:  2020-08-13       Impact factor: 3.361

  3 in total

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