Hollow/Rattle-Type Mesoporous Nanostructures by a Structural Difference-Based Selective Etching Strategy
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- 30 December 2009
- journal article
- research article
- Published by American Chemical Society (ACS) in ACS Nano
- Vol. 4 (1) , 529-539
- https://doi.org/10.1021/nn901398j
Abstract
A novel “structural difference-based selective etching” strategy has been developed to fabricate hollow/rattle-type mesoporous nanostructures, which was achieved by making use of the structural differences, rather than traditional compositional differences, between the core and the shell of a silica core/mesoporous silica shell structure to create hollow interiors. Highly dispersed hollow mesoporous silica spheres with controllable particle/pore sizes could be synthesized by this method, which show high loading capacity (1222 mg/g) for anticancer drug (doxorubicin). Hemolyticity and cytotoxicity assays of hollow mesoporous silica spheres were conducted, and the synthesized hollow mesoporous silica spheres with large pores show ultrafast immobilization of protein-based biomolecules (hemoglobin). On the basis of this strategy, different kinds of heterogeneous rattle-type nanostructures with inorganic nanocrystals, such as Au, Fe2O3, and Fe3O4 nanoparticles, as the core and mesoporous silica as the shell were also prepared. This strategy could be extended as a general approach to synthesize various hollow/rattle-type nanostructures by creating adequate structural differences between cores and shells in core/shell structures in nanoscale.Keywords
This publication has 32 references indexed in Scilit:
- An Efficient Route to Rattle-Type Fe3O4@SiO2 Hollow Mesoporous Spheres Using Colloidal Carbon Spheres TemplatesChemistry of Materials, 2009
- Fabrication of uniform hollow mesoporous silica spheres and ellipsoids of tunable size through a facile hard-templating routeJournal of Materials Chemistry, 2009
- Synthesis of a Cagelike Hollow Aluminosilicate with Vermiculate Micro‐Through‐Holes and its Application to Ship‐In‐Bottle Encapsulation of ProteinSmall, 2009
- Hollow Micro‐/Nanostructures: Synthesis and ApplicationsAdvanced Materials, 2008
- Silica−Void−Gold Nanoparticles: Temporally Stable Surface-Enhanced Raman Scattering SubstratesJournal of the American Chemical Society, 2008
- A facile route to hollow nanospheres of mesoporous silica with tunable sizeChemical Communications, 2008
- Carbon Nanotubes Encapsulated in Wormlike Hollow Silica ShellsSmall, 2006
- Nanoparticle Architectures Templated by SiO2/Fe2O3 NanocompositesChemistry of Materials, 2006
- Nanoengineering of Inorganic and Hybrid Hollow Spheres by Colloidal TemplatingScience, 1998
- Direct observation of chemical reactions in silica‐coated gold and silver nanoparticlesAdvanced Materials, 1997