2,5-Diketopiperazines via Intramolecular N‑Alkylation of Ugi Adducts: A Contribution to the Synthesis, Density Functional Theory Study, X‑ray Characterization, and Potential Herbicide Application

To investigate the herbicidal potential of 2,5-diketopiperazines (2,5-DKPs), we applied a known protocol to produce a series of 2,5-DKPs through intramolecular N-alkylation of Ugi adducts. However, the method was not successful for the cyclization of adducts presenting aromatic rings with some subst...

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Veröffentlicht in:Journal of agricultural and food chemistry 2022-02, Vol.70 (6), p.1799-1809
Hauptverfasser: Mendes, Lorena L, Varejão, Jodieh O. S, de Souza, José Antônio, Carneiro, José Walkimar de M, Valdo, Ana K. S. M, Martins, Felipe T, Ferreira, Bruno W, Barreto, Robert W, da Silva, Toshik I, Kohlhoff, Markus, Pilau, Eduardo J, V. Varejão, Eduardo V
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Sprache:eng
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Zusammenfassung:To investigate the herbicidal potential of 2,5-diketopiperazines (2,5-DKPs), we applied a known protocol to produce a series of 2,5-DKPs through intramolecular N-alkylation of Ugi adducts. However, the method was not successful for the cyclization of adducts presenting aromatic rings with some substituents at the ortho position. Results from DFT calculations showed that the presence of voluminous groups at the ortho position of a benzene ring results in destabilization of the transition structure. Lower activation enthalpies for the SN2-type cyclization of Ugi adducts were obtained when bromine, instead of a chlorine anion, is the leaving group, indicating that the activation enthalpy for the cyclization step controls the formation of the 2,5-DKP. Some Ugi adducts and 2,5-DKPs formed crystals with suitable qualities for single-crystal X-ray diffraction data collection. Phytotoxic damage of some 2,5-DKPs on leaves of the weed Euphorbia heterophylla did not differ from those caused by the commercial herbicide diquat.
ISSN:0021-8561
1520-5118
DOI:10.1021/acs.jafc.1c07790