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光学活性 α-(取代苯氧乙酰氧基)-(取代苯基)甲基膦酸酯的合成与除草活性。

Synthesis and herbicidal activity of optically active α-(substituted phenoxyacetoxy) (substituted phenyl) methylphosphonates.

机构信息

Key Laboratory of Pesticide & Chemical Biology, Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, Hubei 430079, PR China.

Key Laboratory of Pesticide & Chemical Biology, Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, Hubei 430079, PR China.

出版信息

Pestic Biochem Physiol. 2017 Nov;143:298-305. doi: 10.1016/j.pestbp.2016.11.009. Epub 2016 Nov 27.

Abstract

α-(Substituted phenoxyacetoxy) alkylphosphonates containing one chiral carbon atom have been demonstrated to be PDHc inhibitor with good herbicidal activity and some of them could be used as potential herbicide. In order to determine any difference in herbicidal activities between (R) and (S) isomers, the synthetic method of optically active substituted phenylalkylphosphonates IB were explored. A highly practical, enantioselective hydrophosphonylation was developed to prepare optically active O,O-dimethyl α-hydroxyalkylphosphonates 3 as key intermediate by asymmetric addition reaction of dimethylphosphite 1 and several kinds of aldehydes 2 using tridentate Schiff base Al(III) complexes as catalysts. A series of novel O,O-dimethyl α-(substituted phenoxyacetoxy)(substituted phenyl)methylphosphonates IB including (R) and (S) enantiomers were further synthesized with excellent enantioselectivity (95-99% ee) by the condensation of optically active α-hydroxyl (substituted phenyl)methylphosphonates 3 and substituted phenoxyacetyl chlorides 4. The herbicidal activities of title compound IB including their racemates, (R) and (S) enantiomers were evaluated in greenhouse for post-emergence application. All compounds IB showed significant inhibitory activity against dicotyledonous plants. A difference in herbicidal effect among racemate, (R) and (S) enantiomers were observed. Especially IB7 and IB10 showed obvious chiral selectivity in inhibitory activity against chickweed. (S)-IB7 with ED of 22.8gai/ha was found to be most effective enantiomer against chickweed and its inhibitory activity was 8.17 times higher than (R)-IB7. (S)-IB7 as potential herbicide would be effective at lower rates than (R)-IB7 or (rac)-IB7.

摘要

含有一个手性碳原子的α-(取代苯氧基乙酰氧基)烷基膦酸酯已被证明是 PDHc 抑制剂,具有良好的除草活性,其中一些可作为潜在的除草剂。为了确定(R)和(S)对映异构体之间除草活性的任何差异,探索了光学活性取代苯基烷基膦酸酯 IB 的合成方法。通过三齿席夫碱 Al(III)配合物作为催化剂,开发了一种高度实用的对映选择性氢膦化反应,通过亚膦酸二甲酯 1 和几种醛 2 的不对称加成反应,制备了作为关键中间体的光学活性 O,O-二甲基α-羟基烷基膦酸酯 3。通过光学活性的α-羟基(取代苯基)甲基膦酸酯 3 和取代的苯氧乙酰氯 4 的缩合,进一步合成了一系列新型的 O,O-二甲基α-(取代苯氧基乙酰氧基)(取代苯基)甲基膦酸酯 IB,包括(R)和(S)对映异构体,具有优异的对映选择性(95-99%ee)。标题化合物 IB 及其外消旋体、(R)和(S)对映异构体的除草活性在温室中进行了后出苗应用评价。所有化合物 IB 对双子叶植物均表现出显著的抑制活性。在除草效果方面,外消旋体、(R)和(S)对映异构体之间存在差异。特别是 IB7 和 IB10 对繁缕表现出明显的手性选择性抑制活性。(S)-IB7 的 ED 为 22.8gai/ha,对繁缕的抑制活性最高,是(R)-IB7 的 8.17 倍。(S)-IB7 作为潜在的除草剂,其有效率将低于(R)-IB7 或(rac)-IB7。

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