Published April 21, 2015 | Version v1
Journal article

Modeling optical properties of silicon clusters by first principles: From a few atoms to large nanocrystals

  • 1. Department of Physics and the Centre for Advanced 2D Materials, National University of Singapore, 2 Science Drive 3 (Singapore)
  • 2. Department of Chemistry, National University of Singapore, 3 Science Drive 3 (Singapore)

Description

Time dependent density functional tight binding (TDDFTB) method is implemented with sparse matrix techniques and improved parallelization algorithms. The method is employed to calculate the optical properties of various Si nanocrystals (NCs). The calculated light absorption spectra of small Si NCs from TDDFTB were found to be comparable with many body perturbation methods utilizing planewave basis sets. For large Si NCs (more than a thousand atoms) that are beyond the reach of conventional approaches, the TDDFTB method is able to produce reasonable results that are consistent with prior experiments. We also employed the method to study the effects of surface chemistry on the optical properties of large Si NCs. We learned that the optical properties of Si NCs can be manipulated with small molecule passivations such as methyl, hydroxyl, amino, and fluorine. In general, the shifts and profiles in the absorption spectra can be tuned with suitably chosen passivants

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Chemical Physics
Journal Volume
142
Journal Issue
15
Journal Page Range
p. 154705-154705.6
ISSN
0021-9606
CODEN
JCPSA6

Optional Information

Notes
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