4.7 Article

Optical Contrast and Raman Spectroscopy Techniques Applied to Few-Layer 2D Hexagonal Boron Nitride

期刊

NANOMATERIALS
卷 9, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/nano9071047

关键词

Hexagonal boron nitride; two-dimensional materials; optical contrast; Raman spectroscopy

资金

  1. Horizon 2020 research and innovation program [8204023]
  2. Spanish MINECO [TEC2017-86102-C2-1-R]
  3. SAFMAT [LM2015088, LO1409]
  4. program Atraccio de Talent, VLC-CAMPUS of the [University of Valencia] [UV-INV-PREDOC17F1-539274]
  5. Juan de la Cierva program [MINECO, Spain] [IJCI-2015-25799]
  6. University of Valencia [CPI-18-404]
  7. J.E. Purkyne fellowship - Academy of Sciences of the Czech Republic

向作者/读者索取更多资源

The successful integration of few-layer thick hexagonal boron nitride (hBN) into devices based on two-dimensional materials requires fast and non-destructive techniques to quantify their thickness. Optical contrast methods and Raman spectroscopy have been widely used to estimate the thickness of two-dimensional semiconductors and semi-metals. However, they have so far not been applied to two-dimensional insulators. In this work, we demonstrate the ability of optical contrast techniques to estimate the thickness of few-layer hBN on SiO2/Si substrates, which was also measured by atomic force microscopy. Optical contrast of hBN on SiO2/Si substrates exhibits a linear trend with the number of hBN monolayers in the few-layer thickness range. We also used bandpass filters (500-650 nm) to improve the effectiveness of the optical contrast methods for thickness estimations. We also investigated the thickness dependence of the high frequency in-plane E-2g phonon mode of atomically thin hBN on SiO2/Si substrates by micro-Raman spectroscopy, which exhibits a weak thickness-dependence attributable to the in-plane vibration character of this mode. Ab initio calculations of the Raman active phonon modes of atomically thin free-standing crystals support these results, even if the substrate can reduce the frequency shift of the E-2g phonon mode by reducing the hBN thickness. Therefore, the optical contrast method arises as the most suitable and fast technique to estimate the thickness of hBN nanosheets.

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