254888-82-9Relevant academic research and scientific papers
Synthesis and herbicidal activities of sodium hydrogen 1-(substituted phenoxyacetoxy)alkylphosphonates
Long, Qingwu,Deng, Xiaoyan,Gao, Yujiao,Xie, Huayong,He, Hongwu,Peng, Hao
, p. 819 - 825 (2013/08/23)
A series of sodium hydrogen 1-(substituted phenoxyacetoxy) alkylphosphonates was designed and synthesized. The test for herbicidal activity indicated that most of the phosphonates (8) possessed excellent postemergence herbicidal activities against broadleaf weeds. Especially, 8f and 8g showed the best herbicidal activity against rape and amaranth with more than 95% inhibitory rate. Supplemental materials are available for this article. Go to the publisher's online edition of Phosphorus, Sulfur, and Silicon and the Related Elements to view the free supplemental file.
Synthesis and herbicidal activities of lithium or potassium hydrogen 1-(substituted phenoxyacetoxy)alkylphosphonates
Peng, Hao,Long, Qingwu,Deng, Xiaoyan,He, Hongwu
, p. 1868 - 1874 (2013/11/06)
A series of lithium or potassium hydrogen 1-(substituted phenoxyacetoxy)alkylphosphonates were designed and synthesized. All the title compounds were identified by IR, 1H NMR, and 31P NMR, some of them were further analyzed by MS and elemental analyses. The test for herbicidal activity indicated that most of the phosphonates (8) possessed excellent postemergence herbicidal activities against broadleaf weeds. Supplemental materials are available for this article. Go to the publisher's online edition of Phosphorus, Sulfur, and Silicon and the Related Elements to view the free supplemental file.
Studies of O,O-Dimethyl α-(2,4-Dichlorophenoxyacetoxy) ethylphosphonate (HW02) as a new herbicide. 1. Synthesis and herbicidal activity of HW02 and analogues as novel inhibitors of pyruvate dehydrogenase complex
He, Hong-Wu,Yuan, Jun-Lin,Peng, Hao,Chen, Ting,Shen, Ping,Wan, Shu-Qing,Lee, Yanjun,Tan, Hong-Liang,He, Ya-Hui,He, Jun-Bo,Li, Yan
experimental part, p. 4801 - 4813 (2011/12/04)
On the basis of the previous work for optimization of O,O-diethyl α-(substituted phenoxyacetoxy)alkylphosphonates, further extensive syntheticmodifications were made to the substituents in alkylphosphonate and phenoxymoieties of the title compounds. New O,O-dimethyl α-(substituted phenoxyacetoxy)alkylphosphonates were synthesized as potential inhibitors of pyruvate dehydorogenase complex (PDHc). Their herbicidal activity and efficacy in vitro against PDHc were examined. Some of these compounds exhibited significant herbicidal activity and were demonstrated to be effective inhibitors of PDHc from three different plants. The structure-activity relationships of these compounds including previously reported analogous compoundswere studied by examining their herbicidal activities. Both inhibitory potency against PDHc and herbicidal activity of title compounds could be increased greatly by optimizing substituent groups of the title compounds. O,O-Dimethyl α-(2,4- dichlorophenoxyacetoxy)ethylphosphonate (I-5), which acted as a competitive inhibitor of PDHc with much higher inhibitory potency against PDHc from Pisum sativum and Phaseolus radiatus than from Oryza sativa, was found to be themost effective compound against broadleaf weeds and showed potential utility as herbicide.
Synthesis and herbicidal activities of methyl-1-(2,4- dichlorophenoxyacetoxy)alkylphosphonate monosalts
He, Hong Wu,Wang, Tao,Yuan, Jun Lin
, p. 2608 - 2613 (2007/10/03)
A series of 1-(2,4-dichlorophenoxyacetoxy)alkylphosphonic acid dimethyl esters 5 and its corresponding phosphonate monosalts 6 were synthesized as potential herbicide. The phosphonate monosalts can be prepared from 1-(2,4-dichlorophenoxyacetoxy)alkylphosphonic acid dimethyl esters 5, which were synthesized by the condensation of O,O-dimethyl-1-hydroxyalkylphosphonates with dichlorophenoxyacetic chloride. This method provides a simple and efficient procedure for the synthesis of phosphonate derivatives containing sensitive groups to acid, base or water such as carboxylate ester bond; and the herbicidal activity of title compounds was evaluated in a set of experiments in greenhouse. Most of the compounds exhibited notable herbicidal activity.
Synthesis and dealkylation of 1 -(dichloro-phenoxyacetoxy) alkyl phosphonates
He, Hongwu,Liu, Xufeng,Hu, Liming,Wang, Siquan,Liu, Zhaojie
, p. 633 - 636 (2007/10/03)
Using the silylation procedure with chlorotrimethylsilane/sodium iodide followed by alcoholysis, 1-(dichlorophenoxy acetoxy)alkyl phosphonic acid dimethyl esters can be transformed into the parent phosphonic acids without influence on carboxylate ester group.
