Download Ceramics for Environmental Systems: Ceramic Transactions, by Lianzhou Wang, Nobuhito Imanaka, Waltraud M. Kriven, Manabu PDF

By Lianzhou Wang, Nobuhito Imanaka, Waltraud M. Kriven, Manabu Fukushima, Girish M. Kale, Mrityunjay Singh, Tatsuki Ohji, Alexander Michaelis

This quantity features a choice of 14 papers submitted from the less than 5 symposia held in the course of the eleventh foreign Symposium on Ceramic fabrics and elements for power and Environmental purposes (CMCEE-11), June 14-19, 2015 in Vancouver, BC, Canada:

  • Photocatalysts for power and Environmental Applications
  • Advanced practical fabrics, units, and structures for the Environment
  • Geopolymers, Inorganic Polymer Ceramics and Sustainable Composites
  • Macroporous Ceramics For Environmental and effort Applications
  • Advanced Sensors for power, surroundings, and future health Applications

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J. Phys. Chem. B, Volume 107, 1028-1035. cn ABSTRACT Using anodized pure aluminum, 3102 aluminum alloy and 6061 aluminum alloy as the templates, TiO2 thin films were prepared through a liquid deposition method. The TiO2 nanotubes fabricated on the 3102 aluminum alloy substrate had one-dimensional tubular structures, similar to that obtained on pure aluminum substrate, whereas that prepared on the 6061 aluminum alloy substrate had bamboo-like structure with holes. It was found that the growth of TiO2 nanotubes or nanorods was correlated with AAO templates.

However, TiO2 prepared with the AAO template using sulfuric acid was covered by a thick deposited substance on the surface after LPD process. 3 (c) that TiO2 existed as naonorods with the diameter of 50 nm, whereas using the AAO templates obtained with phosphoric acid, mixed electrolytes of phosphoric acid and oxalic acid, or mixed electrolytes of phosphoric acid and sulfuric acid, all TiO2 existed as nanotubes, but the nanotube diameter varied with the electrolyte, which were summarized in Table 1.

Especially for TiO2 prepared with AAO templates using sulfuric acid, we found a titanium oxide layer on the film surface which might be caused by the deposition of the excess TiO2, but this deposited layer could be easily removed by ultrasonic treatment. 71, therefore, TiO2 existed as nanotubes since TiO2 could not cover all the AAO template surface. Figure 4 displays the morphology of TiO2 prepared with the AAO templates on pure aluminum substrate obtained with phosphoric acid but deposited at different temperature with the same deposition time of 20 min.

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