Laboratorio Kolbe de Síntese Orgânica, Escola de Química e Alimentos, Universidade Federal do Rio Grande, Av. Itália, Km 08, s/n, Rio Grande, RS, Brazil.
Grupo de Catálise e Cinética, Universidade Federal do Paraná, Curitiba, PR, Brazil.
Chem Phys Lipids. 2020 Sep;231:104947. doi: 10.1016/j.chemphyslip.2020.104947. Epub 2020 Jul 2.
This work describes the synthesis of new lipophilic amides and esters analogues of classical organochlorides herbicides by incorporation of long-chains from fatty acids and derivatives. The new fatty esters and amides were synthesized in 96-99% and 80-89% yields, respectively. In general, all compounds tested showed superior in vitro activity than commercial herbicides against growth L. sativa and A. cepa, in ranges 86-100% of germinative inhibition. The target compounds showed, significantly more susceptible towards acid hydrolysis than 2,4-dichlorophenoxyacetic acid (2,4-D). The kinetic and NMR studies showed that the incorporation of lipophilic chains resulted in a decrease in half-life time of new herbicides compounds (1.5 h) than 2,4-D (3 h). These findings suggest the synthesis of new lipophilic herbicides as potential alternative to traditional formulations, by incorporation of long fatty alkyl chains in the molecular structure of 2,4-D, resulting in superior in vitro herbicidal activity, best degradation behavior and more hydrophobic derivatives.
这项工作描述了通过将脂肪酸及其衍生物的长链引入到经典的有机氯除草剂的脂溶性酰胺和酯类似物中来合成新的脂溶性化合物。新的脂肪酸酯和酰胺的产率分别为 96-99%和 80-89%。总的来说,所有测试的化合物在体外对生长的莴苣和洋葱的活性都优于商业除草剂,抑制发芽的活性范围在 86-100%之间。目标化合物对酸水解的敏感性明显高于 2,4-二氯苯氧乙酸(2,4-D)。动力学和 NMR 研究表明,脂溶性链的引入导致新除草剂化合物的半衰期(1.5 小时)比 2,4-D(3 小时)缩短。这些发现表明,通过在 2,4-D 的分子结构中引入长的脂肪烷基链,可以合成新的脂溶性除草剂作为传统制剂的潜在替代品,从而获得更好的体外除草活性、最佳的降解行为和更疏水的衍生物。