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首页> 外文期刊>Journal of structural chemistry >Comparative analysis of complexation of pesticides (fenitrothion, methylparathion, parathion) and their carboxylic ester analogues by beta-cyclodextrin. Theoretical semiempirical calculations
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Comparative analysis of complexation of pesticides (fenitrothion, methylparathion, parathion) and their carboxylic ester analogues by beta-cyclodextrin. Theoretical semiempirical calculations

机译:β-环糊精对农药(杀nitro硫磷,甲基对硫磷,对硫磷)及其羧酸酯类似物的络合进行比较分析。理论半经验计算

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摘要

The complexation by beta-cyclodextrin (beta-CD) of three organophosphorus pesticides, fenitrothion, parathion and methylparathion, and of their carboxylic ester analogues was analyzed using PM3 and molecular mechanics methods. The objective was to elucidate structural features and energy changes that accompany the complexation and could possibly affect the hydrolysis process, which is catalyzed by beta-CD in the case of carboxylic esters but inhibited for the pesticides, in alkaline medium. The complexation of fenitrothion was further explored, since experiments proved its hydrolysis is relatively less inhibited and progresses mainly through a different pathway than that usually accepted. The results of this study show that complex structures involving esters enable effective interactions between the guest carbonyl and the rim of the host; methylparathion and parathion, however, appear to be deeply included in the cavity of beta-CD. Therefore the conditions for a nucleophilic attack by the beta-CD are favorable for the carboxylic esters but not for the two pesticides. Different complex geometries resulted for fenitrothion depending on its mode of inclusion in the cavity, none apparently being prone to an attack by the beta-CD, but favoring instead the approach of an external OH- group, in agreement with the experiment.
机译:使用PM3和分子力学方法分析了三种有机磷农药,杀fe硫磷,对硫磷和甲基对硫磷以及它们的羧酸酯类似物与β-环糊精(β-CD)的络合作用。目的是阐明络合过程中可能会影响水解过程的结构特征和能量变化,在碱性介质中,水解过程在羧酸酯的情况下被β-CD催化,但对农药却被抑制。由于实验证明了对nitro硫磷的络合作用得到了进一步的研究,因为实验证明其水解受到的抑制相对较小,并且主要通过与通常所接受的途径不同的途径进行。这项研究的结果表明,涉及酯的复杂结构使得客体羰基与主体边缘之间可以进行有效的相互作用。然而,甲基对硫磷和对硫磷似乎被深深地包含在β-CD的空腔中。因此,β-CD引起亲核攻击的条件对羧酸酯是有利的,但对两种农药却不利。 nitro硫磷的不同复杂几何形状取决于其在腔体中的包埋方式,显然没有一个容易受到β-CD的攻击,但与实验相一致,更倾向于采用外部OH-基团的方法。

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