M. Mahmoudian, S. Torbati, Neda AliMirzayi, Ehsan Nozad, Mahmoud Ghasemi Kochameshki, A. Shokri
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引用次数: 4
摘要
摘要本研究采用乳液聚合法制备聚甲基丙烯酸甲酯(PMMA)纳米胶囊,并对其释放行为进行了研究。采用傅里叶红外光谱法确定了PMMA/haloxyfop- r -甲基纳米胶囊的化学性质,并用场发射扫描电镜和透射电镜对其表面形貌进行了研究。并对载药纳米胶囊的载药量和包封效率进行了分析。紫外可见光谱法测定PMMA/氟氧草- r -甲基纳米胶囊的释放速度。采用热重分析法对纳米胶囊的热性能和热稳定性进行了研究。纳米胶囊的直径在100 ~ 300 nm之间。增加纳米制剂中除草剂的用量会显著影响纳米胶囊的表面,降低其表面的光洁度。Triton-X100是制备纳米胶囊的最佳表面活性剂,除草剂含量最低的样品在包封和负载效率方面表现最佳。该样品在6天内呈现稳态释放速率。
Preparation and investigation of poly(methylmethacrylate) nano-capsules containing haloxyfop-R-methyl and their release behavior
Abstract In this study, the preparation and characterization of haloxyfop-R-methyl herbicide loaded in poly(methylmethacrylate) (PMMA) nano-capsules by emulsion polymerization and its release behavior were investigated. The chemical characterizations of PMMA/haloxyfop-R-methyl nano-capsules were confirmed by FT-IR spectroscopy method, and the surface morphology was studied by field emission scanning electron microscopy and transmission electron microscopy. Also, the herbicide loading and encapsulation efficiency were analyzed for the herbicide-loaded nano-capsules. The release rate of PMMA/haloxyfop-R-methyl nano-capsules was determined by UV-visible spectroscopy. The thermal properties and thermal stability of nano-capsules were explored by the thermal gravimetric analysis method. The diameter of the nano-capsules was in the range of 100–300 nm. Increasing the amount of herbicide in nano-formulations significantly affected the surface of the nano-capsules and reduced their surface smoothness. Triton-X100 was identified as the best surfactant for the preparation of nano-capsules, and the sample containing the lowest herbicide content showed the best performance in terms of encapsulation and loading efficiency. This sample showed a steady-state release rate during the six days.