Disordered Adsorbed Water Layers on TiO 2 Nanoparticles under Subsaturated Humidity Conditions at 235 K

The interaction of water with TiO is of substantial scientific and technological interest as it determines the activity of TiO in photocatalytic and environmental applications in nanoparticle suspensions in water, in complex appliances, or in pure form interacting with water vapor. The influence of...

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Published inThe journal of physical chemistry letters Vol. 10; no. 23; pp. 7433 - 7438
Main Authors Orlando, Fabrizio, Artiglia, Luca, Yang, Huanyu, Kong, Xiangrui, Roy, Kanak, Waldner, Astrid, Chen, Shuzhen, Bartels-Rausch, Thorsten, Ammann, Markus
Format Journal Article
LanguageEnglish
Published United States 05.12.2019
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Summary:The interaction of water with TiO is of substantial scientific and technological interest as it determines the activity of TiO in photocatalytic and environmental applications in nanoparticle suspensions in water, in complex appliances, or in pure form interacting with water vapor. The influence of TiO nanoparticles on the hydrogen bonding structure of water molecules is an important factor that controls hydration of other species, reactions, or nucleation processes. We use a combination of ambient-pressure X-ray photoelectron spectroscopy and electron yield near-edge X-ray absorption fine structure (NEXAFS) spectroscopy at the oxygen K-edge to investigate the hydrogen bonding structure of adsorbed water on titania nanoparticles in equilibrium with nearly saturated water vapor at 235 K. The results clearly show that the net NEXAFS spectrum of adsorbed water resembles that of liquid, disordered water at 235 K, a temperature at which both homogeneous and heterogeneous freezing of bulk water is anticipated.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.9b02779