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Preparation of Nanocrystalline Titania Thin Films by Using Pure and Water-modified Supercritical Carbon Dioxide.

The result's identifiers

  • Result code in IS VaVaI

    <a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F67985858%3A_____%2F16%3A00467192" target="_blank" >RIV/67985858:_____/16:00467192 - isvavai.cz</a>

  • Alternative codes found

    RIV/00216208:11320/16:10326634 RIV/61989100:27710/16:86100032

  • Result on the web

    <a href="http://dx.doi.org/10.1016/j.supflu.2016.07.007" target="_blank" >http://dx.doi.org/10.1016/j.supflu.2016.07.007</a>

  • DOI - Digital Object Identifier

    <a href="http://dx.doi.org/10.1016/j.supflu.2016.07.007" target="_blank" >10.1016/j.supflu.2016.07.007</a>

Alternative languages

  • Result language

    angličtina

  • Original language name

    Preparation of Nanocrystalline Titania Thin Films by Using Pure and Water-modified Supercritical Carbon Dioxide.

  • Original language description

    Processing by pure and water-modified (30 wt.%) supercritical carbon dioxide and by subcritical water were utilized for the direct preparation of highly pure TiO2 anatase thin films without any subsequent thermal treatment. One step processing was compared with the two or three step processing combining pure and modified CO2. The effect of temperature (40-150 degrees C) and the amount of CO2 (100-200g) passed through the high-pressure column on the (micro)structure and the purity of TiO2 thin films were examined at pressure of 30 MPa. Prepared thin films were characterized with respect to the structural properties and purity by Raman spectroscopy. The most promising thin films were analysed with respect to microstructural properties by means of X-ray diffraction to determine the phase composition, the crystallite-size and the crystallite-size distribution. High temperature had a positive effect on the crystallization as well as the purity of TiO2 thin films during the one step and multi-step processing. When TiO2 thin films were exposed to water-modified supercritical CO2 and temperature of 150 degrees C under pressure of 30 MPa, the desired crystalline structure of anatase was obtained. The anatase crystallites growth was mainly influenced by the presence of water. Anatase crystallites sizes of 2-12 nm were obtained depending on the processing method on both investigated substrates (soda-lime glass and monocrystalline Si) on which the TiO2 thin films were deposited. Using one step or multi-step processing by water-modified supercritical CO2 any undesirable effects such as Na* ions diffusion from the soda-lime glass substrate to the one-layer TiO2 film, having negative effect on crystallization of anatase, did not take place. The universality of developed processing by pure and water-modified supercritical CO2 for preparation of TiO2 anatase thin films was successfully confirmed for two different substrates.

  • Czech name

  • Czech description

Classification

  • Type

    J<sub>x</sub> - Unclassified - Peer-reviewed scientific article (Jimp, Jsc and Jost)

  • CEP classification

    CA - Inorganic chemistry

  • OECD FORD branch

Result continuities

  • Project

    <a href="/en/project/GA14-23274S" target="_blank" >GA14-23274S: Unconventional preparation of nanostructured metal oxides by using pressurized and supercritical fluids</a><br>

  • Continuities

    I - Institucionalni podpora na dlouhodoby koncepcni rozvoj vyzkumne organizace

Others

  • Publication year

    2016

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

Data specific for result type

  • Name of the periodical

    Journal of Supercritical Fluids

  • ISSN

    0896-8446

  • e-ISSN

  • Volume of the periodical

    117

  • Issue of the periodical within the volume

    NOV 2016

  • Country of publishing house

    NL - THE KINGDOM OF THE NETHERLANDS

  • Number of pages

    8

  • Pages from-to

    289-296

  • UT code for WoS article

    000382410800031

  • EID of the result in the Scopus database

    2-s2.0-84989881088