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Fabrication of magnetic porous hollow silica drug carriers using CaCO_3/Fe_3O_4 composite nanoparticles and cationic surfactant double templates

机译:使用CaCO_3 / Fe_3O_4复合纳米粒子和阳离子表面活性剂双模板制备磁多孔中空二氧化硅药物载体

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Magnetic porous hollow silica nanosphere is a new class of structured nanomaterials for drug delivery. In this paper, we report a synthesis of magnetic porous hollow silica nanospheres (MPHSNs) using CaCO_3/Fe_3O_4 composite nanoparticles and cationic surfactant double templates. Fe_3O_4 nanoparticles were first mixed into CaCO_3 using rotating packed bed forming CaCO_3/Fe_3O_4 composite nanoparticles. Tetraethoxysilane was then added as precursor to form silica layer on the surface of CaCO_3/Fe_3O_4 composite nanoparticles, while hexadecyltrimethylammonium bromide was used as a second template to direct the formation of porous silica shells. After the calcination of the surfactants and etching away CaCO_3, MPHSNs were formed with the magnetite nanoparticles remaining in the cores. Transmission electron microscopy was applied for the nanostructure determination. The pore size can be measured by micromeritics analyzer. Magnetic properties of MPHSNs were measured by a superconducting quantum interface device. Zero-field-cooled and field-cooled magnetization data in the temperature range of 5-300 K show that the MPHSNs are superparamagnetism above the blocking temperature and ferromagnetism below the blocking temperature after the calcination. The MPHSNs can be used as potential nanocarriers for targeted delivery and controlled releasing.
机译:磁性多孔中空二氧化硅纳米球是一类新的用于药物递送的纳米材料结构的。在本文中,我们报道了使用碳酸钙/ Fe_3O_4复合纳米粒子和阳离子表面活性剂双模板磁性多孔中空二氧化硅纳米球(MPHSNs)的合成。使用旋转填充床形成碳酸钙/ Fe_3O_4复合纳米粒子Fe_3O_4纳米颗粒第一混入碳酸钙。然后将四乙氧基硅烷的溶液中加入作为前体以碳酸钙/ Fe_3O_4复合纳米粒子的表面上的形式的二氧化硅层,而十六烷基三甲基溴用作第二模板以引导多孔二氧化硅壳的形成。表面活性剂和蚀刻掉的碳酸钙的煅烧后,MPHSNs用残留在芯中的磁铁矿纳米颗粒形成。透射电子显微镜是在应用了纳米结构确定。孔的尺寸可以通过Micromeritics公司分析仪测量。 MPHSNs的磁特性由超导量子接口装置进行测定。零场冷却并在该温度范围的5-300 K展该MPHSNs是上述烧成后的阻塞温度和铁磁性低于阻塞温度超顺磁性场冷却磁化数据。该MPHSNs可以作为靶向递送和控释潜在纳米载体。

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