4.6 Article

Quantitative Analysis of Nanorough Hydrogenated Si(111) Surfaces through Vibrational Spectral Assignment by Periodic DFT Calculations

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 126, Issue 19, Pages 8278-8286

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.1c09766

Keywords

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Funding

  1. Czech Science Foundation [18-14990S]
  2. Czech Ministry of Education, Youth and Sports-Centre of Advanced Photovoltaics [02.1.01/0.0/0.0/15_003/0000464]

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In this work, periodic DFT simulations were used to assign vibrational spectra on nanorough wet-processed hydrogenated Si(111) surfaces, providing a better understanding of the imperfect and nanorough Si(111) surfaces through vibrational spectroscopy.
In this work, we use periodic density functional theory(periodic DFT) to rigorously assign vibrational spectra measured on nanorough wet-processed hydrogenated Si(111) surfaces. We compare Si(111)-(1x1) surfaces etched by dilute HF and NH4F, featuring two vibrational patterns that systematically appear together. They are attributed to vibrations observed on vicinal surfaces featuring 112??and 1??1??2 steps terminated with monohydrides and dihydrides, respectively. For the first time, we fully assign vibration patterns of realistic silicon surfaces with variable nanorough-ness directly by periodic DFT simulations involving contributions from isolated species but also contributions from highly coupled species forming standing waves. This work opens the path to a better quantitative characterization of imperfect and nanorough Si(111) surfaces from vibrational spectra.

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