Perspective: A controversial benchmark system for water-oxide interfaces: H2O/TiO2(110)
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Title
Perspective: A controversial benchmark system for water-oxide interfaces:
H2O/TiO2(110)
Authors
Keywords
-
Journal
JOURNAL OF CHEMICAL PHYSICS
Volume 147, Issue 4, Pages 040901
Publisher
AIP Publishing
Online
2017-07-29
DOI
10.1063/1.4996116
References
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Related references
Note: Only part of the references are listed.- Probing equilibrium of molecular and deprotonated water on TiO2(110)
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- (2015) Giulia Serrano et al. Advanced Materials Interfaces
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- (2014) Jun Cheng et al. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
- Identification of adsorbed molecules via STM tip manipulation: CO, H2O, and O2 on TiO2 anatase (101)
- (2014) Martin Setvin et al. PHYSICAL CHEMISTRY CHEMICAL PHYSICS
- Structure of Clean and Adsorbate-Covered Single-Crystal Rutile TiO2 Surfaces
- (2013) Chi Lun Pang et al. CHEMICAL REVIEWS
- Modeling Water Adsorption on Rutile (110) Using van der Waals Density Functional and DFT+U Methods
- (2013) Nitin Kumar et al. Journal of Physical Chemistry C
- Role of Steps in the Dissociative Adsorption of Water on RutileTiO2(110)
- (2013) H. H. Kristoffersen et al. PHYSICAL REVIEW LETTERS
- Adsorption of organic molecules on rutile TiO2 and anatase TiO2 single crystal surfaces
- (2012) Andrew G. Thomas et al. CHEMICAL SOCIETY REVIEWS
- Water Chain Formation on TiO2(110)
- (2012) Junseok Lee et al. Journal of Physical Chemistry Letters
- Water does partially dissociate on the perfect TiO2(110) surface: A quantitative structure determination
- (2012) D. A. Duncan et al. PHYSICAL REVIEW B
- Experimental evidence for mixed dissociative and molecular adsorption of water on a rutileTiO2(110)surface without oxygen vacancies
- (2010) L. E. Walle et al. PHYSICAL REVIEW B
- Thermally-driven processes on rutile TiO2(110)-(1×1): A direct view at the atomic scale
- (2010) Zdenek Dohnálek et al. PROGRESS IN SURFACE SCIENCE
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