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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Measurement of Uptake and Release Capacities of Mesoporous Silica Nanoparticles Enabled by Nanovalve Gates
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Measurement of Uptake and Release Capacities of Mesoporous Silica Nanoparticles Enabled by Nanovalve Gates

机译:测量纳米阀门引起的介孔二氧化硅纳米颗粒的吸收和释放能力

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The uptake and release capacities of mesoporous silica particles are measured on nanovalve-gated stimulated release systems, using a water-soluble biological stain, Hoechst 33342, as the cargo model. Five different types of mesoporous silica nanoparticles, 2D-hexagonal MCM-41, swollen pore MCM-41, rodlike MCM-41, hollow mesoporous nanoparticles, and radial mesoporous nanoparticles, are studied and compared. Solid silica nanoparticles are used as the control. Because of the presence of the nanovalves, the loaded and capped particles can be washed thoroughly without losing the content of the mesopores. The quantities of Hoechst 33342 molecules trapped within the nanoparticles and released upon opening the nanovalves are systematically studied for the first time. The loading conditions are optimized by varying the Hoechst concentration in the loading solutions. Surprisingly, increasing the Hoechst concentration in the loading solution does not always result in a larger amount of Hoechst being trapped and released. Among the five types of mesoporous silica nanoparticles, the radial mesoporous nanoparticles and the swollen pore MCM-41 particles show the highest and lowest release capacity, respectively. The uptake capacities are correlated with the specific surface area of the materials rather than their internal volume. The uptake and release behaviors are also affected by charge and spatial factors.
机译:使用水溶性生物染料Hoechst 33342作为货物模型,在纳米阀门控释放系统上测量了介孔二氧化硅颗粒的吸收和释放能力。研究并比较了五种不同类型的介孔二氧化硅纳米粒子,2D六角形MCM-41,溶孔MCM-41,棒状MCM-41,空心介孔纳米粒子和放射状介孔纳米粒子。固体二氧化硅纳米颗粒用作对照。由于存在纳米阀,因此可以彻底洗涤装载和封端的颗粒,而不会损失中孔的含量。首次系统地研究了捕获在纳米颗粒中并在打开纳米阀时释放的Hoechst 33342分子的数量。通过改变加载溶液中的Hoechst浓度可以优化加载条件。出人意料的是,增加上样溶液中的Hoechst浓度并不总是导致大量Hoechst被捕获和释放。在五种类型的介孔二氧化硅纳米颗粒中,径向介孔纳米颗粒和溶胀的孔MCM-41颗粒分别显示最高和最低释放能力。吸收能力与材料的比表面积而不是其内部体积相关。摄取和释放行为也受到电荷和空间因素的影响。

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