articleScientific ReportsFeb 17, 2015GOLD OA

Strongly anisotropic in-plane thermal transport in single-layer black phosphorene

Carnegie Mellon University

PubMed
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Abstract

Using first principles calculations, we predict the thermal conductivity of the two-dimensional materials black phosphorene and blue phosphorene. Black phosphorene has an unprecedented thermal conductivity anisotropy ratio of three, with predicted values of 110 W/m-K and 36 W/m-K along its armchair and zigzag directions at a temperature of 300 K. For blue phosphorene, which is isotropic with a zigzag structure, the predicted value is 78 W/m-K. The two allotropes show strikingly different thermal conductivity accumulation, with phonons of mean free paths between 10 nm and 1 μm dominating in black phosphorene, while a much narrower band of mean free paths (50-200 nm) dominate in blue phosphorene. Black…

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Authors

2

Topics & keywords

Keywords
  • Phosphorene
  • Zigzag
  • Anisotropy
  • Isotropy
  • Thermal conductivity
  • Materials science
  • Condensed matter physics
  • Phonon
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