Ordered bicontinuous nanoporous and nanorelief ceramic films from self assembling polymer precursors

Three-dimensional ceramic nanostructured films were produced from silicon-containing triblock copolymer films exhibiting the double gyroid and inverse double gyroid morphologies (space group Ia3d). A one-step room-temperature oxidation process that used ozonolysis and ultraviolet irradiation effecte...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 1999-11, Vol.286 (5445), p.1716-1719
Hauptverfasser: Chan, VZ, Hoffman, J, Lee, VY, Iatrou, H, Avgeropoulos, A, Hadjichristidis, N, Miller, RD, Thomas, EL
Format: Artikel
Sprache:eng
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Zusammenfassung:Three-dimensional ceramic nanostructured films were produced from silicon-containing triblock copolymer films exhibiting the double gyroid and inverse double gyroid morphologies (space group Ia3d). A one-step room-temperature oxidation process that used ozonolysis and ultraviolet irradiation effected both the selective removal of the hydrocarbon block and the conversion of the silicon-containing block to a silicon oxycarbide ceramic stable to 400 degrees C. Depending on the relative volume fraction of the hydrocarbon block to the silicon- containing block, either nanoporous or nanorelief structures were fabricated with calculated interfacial areas of approximately 40 square meters per gram and pore or strut sizes of approximately 20 nanometers.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.286.5445.1716