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New Herbicide Models from Benzoxazinones:Aromatic Ring Functionalization Effects

机译:苯并恶嗪酮类除草剂的新模型:芳环官能化作用

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The utility of benzoxazinones and some of their synthetic derivatives in the search for new leads for herbicide model development has been widely discussed.As the benzoxazinone skeleton contains three different potential areas for functionalization(C-2,N-4,and aromatic protons H-5,H-6,H-7,and H-8),and the first two have already been optimized,the main objective of this work was the substitution of aromatic protons for different substituent types and the study of the effects of the prepared chemicals on selected standard target species(STS)and weeds.Thus,different combinations of aromatic substituents,including methoxy,methoxycarbonyl,fluorine,chlorine,and trifluo-romethyl,were introduced at different positions.Phytotoxicity results were successfully correlated with steric and electronic molecular parameters,the resulting molecular volume(V)and dipole moment(nu)being the most influential ones.Halogenations at C-6 and fluorination at C-7 were the most successful modifications.Compounds 6-fluoro-(2H)-1,4-benzoxazin-3(4H)-one(6F-D-DIBOA),7-fluoro-(2H)-1,4-benzoxazin-3(4H)-one(7F-D-DIBOA),and 6-chloro-(2H)-1,4-benzoxazin-3(4H)-one(6Cl-D-DIBOA)had the highest phytotoxic activities.The dose-response profiles on wheat and two of its most common weeds(Lolium rigidum Gaud,and Avena fatua L.)were compared by means of a proposed selectivity index,which displayed 7F-D-DIBOA as the most selective of the tested benzoxazinones.
机译:苯并恶嗪酮及其一些合成衍生物在寻找除草剂模型开发的新线索中的用途已被广泛讨论。由于苯并恶嗪酮骨架包含三个不同的潜在官能化区域(C-2,N-4和芳族质子H- 5,H-6,H-7和H-8),并且前两个参数已经过优化,这项工作的主要目的是用芳香族质子替代不同的取代基类型并研究所制备化合物的作用。因此,在不同的位置引入了不同的芳族取代基组合,包括甲氧基,甲氧基羰基,氟,氯和三氟甲基,并将其光毒性结果成功地与空间和电子分子相关联的参数,最有影响的分子体积(V)和偶极矩(nu)。C-6的卤代和C-7的氟化是最成功的修饰。化合物6 -氟-(2H)-1,4-苯并嗪-3(4H)-一个(6F-D-DIBOA),7-氟-(2H)-1,4-苯并嗪-3(4H)-一个(7F- D-DIBOA)和6-氯-(2H)-1,4-苯并恶嗪-3(4H)-1(6Cl-D-DIBOA)具有最高的植物毒活性。小麦及其两个小麦的剂量反应曲线通过拟议的选择性指数对最常见的杂草(硬叶黑麦草和燕麦)进行了比较,该指数显示出7F-D-DIBOA是测试的苯并恶嗪酮类中选择性最高的。

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