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Encapsulation of Pesticide Nanoparticles Using Polymerized Carbon Nanotubes and Application of Synthesized Nanocomposite for Alternaria Alternata Fungi

机译:聚合碳纳米管对农药纳米颗粒的包封及其在链格孢菌中的应用

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Polymerization of citric acid onto the surface of oxidized multi wall carbon nanotubes was led to MWCNT-graft-poly (citric acid) (MWCNT-g-PCA) hybrid materials. Trapping of pesticides such as Benomyl, Trichlorfon and Pymetrozine (chess) in aqueous solution by MWCNT-g-PCA hybrid materials was led to Encapsulated Pesticide (EP) into polycitric acid shell. Optimum condition for encapsulation of Benomyl, Trichlorfon and Pymetrozine in hyper branch polycitric acid such as pH, stirring time and temperature was investigated by UV-Vis spectroscopy method. Also encapsulation of pesticides on CNT-g-PCA hybrid material were confirmed via TEM analysis. Furthermore the effect of encapsulated Benomyl on Alternaria alternate fungi was investigated. Experiments indicated that encapsulated Benomyl in comparison with bulk Benomyl had superior toxic influence on Alternaria alternata fungi.
机译:柠檬酸在氧化的多壁碳纳米管表面上的聚合导致了MWCNT-接枝-聚(柠檬酸)(MWCNT-g-PCA)杂化材料。用MWCNT-g-PCA杂化材料在水溶液中捕集农药(如苯菌灵,敌百虫和嘧菌嗪(棋s))导致将包封的农药(EP)放入聚柠檬酸壳中。采用紫外-可见光谱法研究了将苯菌灵,敌百虫和吡me嗪在高支化聚柠檬酸中的最佳包封条件,例如pH,搅拌时间和温度。还通过TEM分析证实了农药在CNT-g-PCA杂化材料上的包封。此外,还研究了包囊苯菌灵对交替链格孢菌的影响。实验表明,包封的苯菌灵与散装的苯菌灵相比,对链格孢菌有更强的毒性作用。

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