首页> 外文会议>European conference on biomaterials;ESB 2010 >Encapsuled luminescent water soluble ZnS semiconductor Nanocrystals within Sol-gel silica For bioanalysis Applications
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Encapsuled luminescent water soluble ZnS semiconductor Nanocrystals within Sol-gel silica For bioanalysis Applications

机译:溶胶-凝胶二氧化硅中封装的发光水溶性ZnS半导体纳米晶体的生物分析应用

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Luminescent semiconductor nanocrystals have unique photophysical properties and in respect with these properties, they have a lot of applications in bioanalysis especially in corporation with biomolecules. One of the obstacles that exist in the use of semiconductor nanocrystals as probes for bioanalysis is that after adding the biomolecules like enzymes, they cannot be reused. The sol-gel technique can be used for immobilizing both semiconductor nanocrystal and biomolecule in a biocompatible transparent silica gel. In this work, ZnS semiconductor nanocrystals were synthesized in cyclohexan/triton x-100/n-hexanol/water reverse microemulsion system. Microemulsion method is a suitable technique for controlling size and uniformity of nanoparticles. A lot of parameters can modulate characteristics of resultant nanoparticles in microemulsion method including reactant concentrations, [water]/[surfactant], temperature of reaction. The Schematic of ZnS nanocrystal synthesis in microemmulsion system is shown in figure 1.
机译:发光半导体纳米晶体具有独特的光物理性质,就这些性质而言,它们在生物分析中具有许多应用,尤其是在与生物分子结合时。在使用半导体纳米晶体作为生物分析探针时存在的障碍之一是,在添加了酶等生物分子后,它们将无法再利用。溶胶-凝胶技术可用于将半导体纳米晶体和生物分子固定在生物相容性透明硅胶中。在这项工作中,ZnS半导体纳米晶体是在环己酮/ triton x-100 / n-己醇/水反相微乳液体系中合成的。微乳液法是控制纳米颗粒尺寸和均匀性的合适技术。许多参数可以通过微乳液法调节所得纳米颗粒的特性,包括反应物浓度,[水] / [表面活性剂],反应温度。微乳液体系中ZnS纳米晶的合成示意图如图1所示。

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