College of Materials, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, Zhejiang 310036, P. R. China.
Nanoscale. 2011 Oct 5;3(10):4069-73. doi: 10.1039/c1nr10718f. Epub 2011 Aug 22.
We demonstrate an efficient synthesis of novel layered double hydroxide mesoporous silica core-shell nanostructures (LDH@mSiO(2)) that have a hexagonal MgAl-LDH nanoplate core and an ordered mesoporous silica shell with perpendicularly oriented channels via a surfactant-templating method. Transmission electron microscopy, X-ray diffraction and N(2) sorption analyses confirmed that the obtained nanostructures have uniform accessible mesopores (∼2.2 nm), high surface area (∼430 m(2) g(-1)), and large pore volume (∼0.22 cm(3) g(-1)). Investigations of drug release and bio-imaging showed that this material has a slow release effect of ibuprofen and good biocompatibility. This work provides an economical approach to fabricate LDH@mSiO(2) core-shell nanostructures, which may have great potential in broad drug delivery and hyperthermia therapy applications.
我们展示了一种高效合成新型层状双氢氧化物介孔硅核壳纳米结构(LDH@mSiO(2))的方法,该方法通过表面活性剂模板法,以具有六方相 MgAl-LDH 纳米片核和垂直取向孔道的有序介孔硅壳为特征。透射电子显微镜、X 射线衍射和 N(2)吸附分析证实,所得到的纳米结构具有均匀的可及介孔(2.2nm)、高比表面积(430 m(2) g(-1))和大孔体积(~0.22 cm(3) g(-1))。药物释放和生物成像研究表明,该材料具有布洛芬的缓慢释放效果和良好的生物相容性。这项工作提供了一种经济的方法来制备 LDH@mSiO(2)核壳纳米结构,在广泛的药物输送和热疗治疗应用中可能具有巨大的潜力。