2023Unpublished venueRequires access

Mechanism of Photo‐Induced Superhydrophilicity

Hiroshi Irie, Donald A. Tryk, Kazuhito Hashimoto, Akira Fujishima

Open publisher page 1 citations

Abstract

The aspects of photoinduced superhydrophilic TiO 2 surface and the mechanistic approaches for the superhydrophilicity were overviewed. We propose that the surface energy of the TiO 2 surface increases by being covered with the thermodynamically less stable OH groups, resulting in the generation of the superhydrophilicity.

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What this paper is about

The aspects of photoinduced superhydrophilic TiO 2 surface and the mechanistic approaches for the superhydrophilicity were overviewed. We propose that the surface energy of the TiO 2 surface increases by being covered with the thermodynamically less stable OH groups, resulting in the generation of the superhydrophilicity.

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Available abstract

The aspects of photoinduced superhydrophilic TiO 2 surface and the mechanistic approaches for the superhydrophilicity were overviewed. We propose that the surface energy of the TiO 2 surface increases by being covered with the thermodynamically less stable OH groups, resulting in the generation of the superhydrophilicity.

Key concepts: Superhydrophilicity, Surface (topology), Mechanism (biology), Materials science, Chemistry, Nanotechnology, Computer science, Wetting

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