首页> 外文会议>Symposium on Organic/Inorganic Hybrid Materials―2002, Apr 1-5, 2002, San Francisco, California >Microencapsulation of Oil in Organically Modified Silicate Glass by Sol-Gel Process
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Microencapsulation of Oil in Organically Modified Silicate Glass by Sol-Gel Process

机译:溶胶-凝胶法将有机改性硅酸盐玻璃中的油微囊化

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Microencapsulation provides protection and sustained or controlled release of active core agents. The sol-gel process has opened up a new way for encapsulating oil droplets within an inorganic capsule. Silica microcapsules were prepared in silica precursor-oil mixtures/NH_4OH water microemulsion system. In this step, the formation of capsules incorporating oil depended strongly on the type of silica precursor. A spherical silica microsheres were only obtained when oligomer, synthesized by the hydrolysis and co-condensation of equiweight of TEOS (tetraethylorthosilicate) and MTMS (methyltrimethoxysilane), was used as the wall materials. The particles size of silica microcapsules was in the range of 1~100 μm, depending on processing parameter such as a shear rate and O/W ratio etc. In controlled release system, the shell porosity is important to give an appropriate permeability, corresponding to the release rate. The pore structure, responsible for permeability, was adjusted by doping alkyl silane, and investigated with nitrogen sorption measurement.
机译:微囊化可保护活性核心剂并持续释放或控制释放。溶胶-凝胶工艺开辟了一种将油滴包裹在无机胶囊中的新方法。在二氧化硅前体-油混合物/ NH_4OH水微乳液体系中制备二氧化硅微囊。在此步骤中,掺入油的胶囊的形成在很大程度上取决于二氧化硅前体的类型。仅当通过等量的TEOS(原硅酸四乙酯)和MTMS(甲基三甲氧基硅烷)的水解和共缩合合成的低聚物获得球形二氧化硅微缝隙。二氧化硅微胶囊的粒径在1〜100μm的范围内,取决于剪切速率和O / W比等加工参数。在控释系统中,壳的孔隙度对于提供适当的渗透性至关重要,对应于释放率。通过掺杂烷基硅烷来调节负责渗透性的孔结构,并通过氮吸附测量进行研究。

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