JOURNAL ARTICLE

Electronic properties of nickel-doped TiO2anatase

Stephanie JensenDmitri S. Kilin

Year: 2015 Journal:   Journal of Physics Condensed Matter Vol: 27 (13)Pages: 134207-134207   Publisher: IOP Publishing

Abstract

Atomistic details of electron transfer in semiconductor materials are characterized for TiO2 thin film surfaces doped with nickel. A periodic slab model of eight atomic layers exposes the (1 0 0) crystallographic surface and is covered with a monolayer of water. The density of states, absorption spectra, partial charge densities, molecular dynamics, and non-adiabatic couplings are compared between doped and undoped models. Our results show that Ni doping improves several electronic properties including lowering the band gap, increasing visible light absorption, and shortening the relaxation time of holes rather than electrons, which maximizes charge separation. The different mechanisms of electron and hole dynamics are discussed. The computed characteristics of a doped semiconductor material have practical potential for increasing efficiency of a photo-electrochemical cells.

Keywords:
Doping Materials science Anatase Semiconductor Absorption spectroscopy Monolayer Band gap Electron Absorption (acoustics) Nickel Electronic structure Relaxation (psychology) Chemical physics Molecular physics Condensed matter physics Optoelectronics Nanotechnology Optics Chemistry Photocatalysis Composite material Physics

Metrics

23
Cited By
1.58
FWCI (Field Weighted Citation Impact)
69
Refs
0.83
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Quantum Dots Synthesis And Properties
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Electrocatalysts for Energy Conversion
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment

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