Structure and Optical Properties of Small (TiO2)(n) Nanoparticles, n=21-24
Journal article, 2017

Recently, nanostructured TiO2 ("black TiO2") has been discovered to absorb visible light, which makes, it an efficient material for water splitting. Hydrogenization has been proposed to be at the origin of this beneficial electronic structure of black TiO2. Here, we investigate, using ab initio methods, alternative mechanisms related to structure modifications in nanoclusters that could be responsible for absorption in the visible range. To that end, we apply a combination of computational structure prediction using simulated annealing and minima-hopping methods based on density-functional theory to predict low-energy configurations and time-dependent density-functional theory (TDDFT) using a hybrid functional with optimized Hartree Fock content to obtain optical absorption edges.

Author

Baochang Wang

Chalmers, Physics

Competence Centre for Catalysis (KCK)

S. Korbel

Friedrich Schiller Universitat Jena

Universite Claude Bernard Lyon 1

S. Saha

Universitat Basel

S. Botti

Friedrich Schiller Universitat Jena

N. V. Skorodumova

The Royal Institute of Technology (KTH)

Uppsala Universitet

Journal of Physical Chemistry C

1932-7447 (ISSN) 1932-7455 (eISSN)

Vol. 121 17 9528-9536

Subject Categories (SSIF 2011)

Condensed Matter Physics

DOI

10.1021/acs.jpcc.6b11461

More information

Created

10/8/2017