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海藻酸疏水衍生物水悬纳米胶囊的制备及其性能 被引量:3

Preparation and Performance of Water Suspension Nanocapsules of Alginate Hydrophobic Derivatives
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摘要 采用海藻酸辛酰胺作为囊材,基于微乳模板制备了功夫菊酯水悬纳米胶囊。采用透射电镜对纳米胶囊的形貌进行了考察;结合激光粒度仪对胶囊的粒径进行了分析;讨论了不同海藻酸辛酰胺、氯化钙和表面活性剂的用量对制备的胶囊粒径的影响;并使用气相色谱测定胶囊中功夫菊酯的释放量,研究其释放性能。结果表明:随着加入表面活性剂量的增加,纳米胶囊的粒径逐渐减小;当w(功夫菊酯)=2.5%,w(表面活性剂)=17.5%,w(海藻酸辛酰胺)=0.1%,w(CaCl2)=0.05%时,水悬纳米胶囊平均粒径为7.76 nm;功夫菊酯纳米胶囊累积释放率达到60%时需300 min,微乳需200 min,纳米胶囊减缓了芯药的释放。 Octyl-grafted alginate-amide was chosen as capsule material to prepare water suspension nanoeapsule made of λ-cyhalothrin based on micro-emulsion template. The morphology of nanocapsules was characterized by means of transmission electron microscopy, the size of nanocapsules was characterized by means of laser particle size analysis and the effects of different octyl-grafted alginate- amide derivatives, calcium chloride and the amount of surfaetant on the sizes of nanoeapsules were discussed with the analysis of capsule particle sizes by laser particle size analyzer. Additionally, the release performance of the nanocapsules was studied based on the release quantity of A-eyhalothrin determined by gas chromatography. The results indicate that:the size of nanoeapsules decreased with the increase of surfaetant content; the average size of water suspension nanocapsules was 7.76 nm when w (A-cyhalothrin) = 2.5 %, w (surfactant) = 17.5 %, w ( octyl-grafted alginate-amide derivative ) = 0. 1% and w (calcium chloride) = 0. 05% ;in order to obtain 60% of release rate of chlorine fluorine cyanide chrysanthemum ester with high performance, the micro-emulsion needed 200 rain and the nanoeapsule needed 300 rain. Overall,the nanocapsules restrained the release of core drug.
出处 《精细化工》 EI CAS CSCD 北大核心 2013年第6期601-604,627,共5页 Fine Chemicals
基金 "十二五"国家科技支撑计划资助项目(2011BAE06A06-7 2011BAE06B04-7) 海南省重点科技计划资助项目(ZDXM20120003) 海口市重点科技计划项目(2011-0104)~~
关键词 纳米胶囊 微乳 海藻酸辛酰胺 氯化钙 苯乙烯基苯酚聚氧乙烯醚 功能材料 nanocapsule microemulsion octyl-grafted alginate-amide derivative calcium chloride polyoxyethylene styrenyl phenyl ether functional materials
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