Anatase–silica composite aerogels: a nanoparticle-based approach

被引:0
作者
Florian J. Heiligtag
Niklaus Kränzlin
Martin J. Süess
Markus Niederberger
机构
[1] Department of Materials,Laboratory for Multifunctional Materials
[2] ETH Zurich,undefined
[3] Electron Microscopy ETH Zurich (EMEZ),undefined
来源
Journal of Sol-Gel Science and Technology | 2014年 / 70卷
关键词
Nanoparticles; Sol–gel chemistry; Aerogels; Silica; Titania; Self-assembly;
D O I
暂无
中图分类号
学科分类号
摘要
Herein we present the synthesis of anatase–silica aerogels based on the controlled gelation of preformed nanoparticle mixtures. The monolithic aerogels with macroscopic dimensions show large specific surface areas, and high and uniform porosities. The major advantage of such a particle-based approach is the great flexibility in pre-defining the compositional and structural features of the final aerogels before the gelation process by fine-tuning the properties of the titania and silica building blocks (e.g., size, composition and crystallinity) and their relative ratio in the dispersion. Specific surface functionalization enables control over the interaction between the nanoparticles and thus over their distribution in the aerogel. Positively charged titania nanoparticles are co-assembled with negatively charged Stoeber particles, resulting in a binary aerogel with a crystalline anatase and amorphous silica framework directly after supercritical drying without any calcination step. Titania–silica aerogels combine the photocatalytic activity of the anatase nanoparticles with the extensive silica chemistry available for silica surface functionalization.
引用
收藏
页码:300 / 306
页数:6
相关论文
共 142 条
  • [31] Pajonk GM(1995)Biochemically functionalized silica nanoparticles J Non-Cryst Solids 185 203-220
  • [32] Rolison D(1968)Colloidal silica nanoparticles for use in click chemistry-based conjugations and fluorescent affinity assays J Phys C 1 299-303
  • [33] Schneider M(1976)Bioconjugated silica nanoparticles: development and applications Phys Rev Lett 37 1474-1478
  • [34] Baiker A(1996)Porous semiconductor chalcogenide aerogels J Non-Cryst Solids 201 177-198
  • [35] Maira AJ(2005)Colloidal nanocrystal-based gels and aerogels: material aspects and application perspectives J Am Chem Soc 127 8659-8666
  • [36] Yeung KL(1992)Ligand-directed assembly of preformed titania nanocrystals into highly anisotropic nanostructures J Non-Cryst Solids 147 157-161
  • [37] Lee CY(1957)Ligand functionality as a versatile tool to control the assembly behavior of preformed titania nanocrystals J Phys Chem 61 1174-1177
  • [38] Yue PL(1991)Template-free co-assembly of preformed Au and TiO J Non-Cryst Solids 128 77-85
  • [39] Chan CK(2002) nanoparticles into multicomponent 3D aerogels J Mater Chem 12 2594-2596
  • [40] Maira AJ(1995)A literature survey of the differences between the reported isoelectric points and their discussion J Catal 153 165-176