JOURNAL ARTICLE

<title>Macroporous ceramics by colloidal templating</title>

G. SubramaniamDavid J. Pine

Year: 2000 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 3937 Pages: 28-35   Publisher: SPIE

Abstract

We describe a novel method of fabricating macroporous ceramics employing colloidal dispersion of ultrafine ceramic particles with latex particles as the templates. The colloidal particles form a particulate gel on drying and fill the voids of the ordered latex templates. Subsequent removal of the template by calcination results in the formation of an ordered macroporous ceramic. The process has significant advantages over the traditional sol-gel process employing alkoxide precursors. Most importantly, the much lower shrinkage compared to the sol-gel process enabled us to produce larger pieces of the sample. The larger shrinkage involved in the sol-gel process often results in small and fragile pieces of the macroporous material which has to be subsequently heat treated to induce crystallization. The ability to choose crystalline colloidal particles in our method obviates the need for heat treatment to achieve crystallinity. We have synthesized a variety of materials such as macroporous silica, titania, alumina and recently have also extended the approach to macroporous silicon which is not amenable to the sol-gel process.

Keywords:
Materials science Ceramic Calcination Sol-gel Shrinkage Crystallinity Crystallization Colloid Chemical engineering Template Colloidal silica Dispersion (optics) Colloidal crystal Copolymer Nanotechnology Composite material Coating Polymer Chemistry Organic chemistry Catalysis

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Topics

Mesoporous Materials and Catalysis
Physical Sciences →  Materials Science →  Materials Chemistry
Aerogels and thermal insulation
Physical Sciences →  Chemistry →  Spectroscopy
Photonic Crystals and Applications
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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