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Bicontinuous ceramics with high surface area from block copolymer templates
Journal article   Peer reviewed

Bicontinuous ceramics with high surface area from block copolymer templates

Han-Yu Hsueh and Rong-Ming Ho
Langmuir, Vol.28(22), pp.8518-8529
05/06/2012

Abstract

Mesoporous polymers with gyroid nanochannels can be fabricated from the self-assembly of degradable block copolymer, polystyrene-b-poly(l-lactide) (PS-PLLA), followed by hydrolysis of PLLA block. Well-defined polymer/ceramic nanohybrid materials with inorganic gyroid nanostructures in a PS matrix can be obtained by using the mesoporous PS as a template for sol-gel reaction. Titanium tetraisopropoxide (TTIP) is used as a precursor to give a model system for the fabrication of metal oxide nanostructures from reactive transition metal alkoxides. By controlling the rates of capillary-driven pore filling and sol-gel reaction, the templated synthesis can be well-developed. Also, by taking advantage of calcination, bicontinuous TiO 2 with controlled crystalline phase (i.e., anatase phase) can be fabricated after removal of the PS template and crystallization of TiO 2 by calcination leading to high photocatalytic efficiency. This new approach provides an easy way to fabricate high-surface-area and high-porosity ceramics with self-supporting structure and controlled crystalline phase for practical applications. As a result, a platform technology to fabricate precisely controlled polymer/ceramic nanohybrids and mesoporous ceramic materials can be established. © 2012 American Chemical Society.

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